Author: Andrew Bennett Hellman
Publisher: Stanford University
ISBN:
Category :
Languages : en
Pages : 181
Book Description
The nervous system is comprised of a complex network of neurons that are connected by specialized structures called synapses. Each synapse contains a myriad of proteins that fulfill different functions, ranging from the release and reception of neurotransmitters to the maintenance and strengthening of the signals between neurons. Given the multitude of proteins present at the synapse, one question is how do they arrive and remain there? In my thesis, I use Caenorhabditis elegans to explore the cellular processes that contribute to the proper localization of important presynaptic proteins. In the first part of my thesis, I explored how presynaptic proteins are properly localized to the signal-sending process, called the axon, and excluded from the signalreceiving process, called the dendrite. In the motor neuron DA9, synaptic vesicles localize in a stereotyped region of the axon, but in cdk-5 mutants, 40% of the vesicle material is mislocalized to the dendrite. Chan-Yen Ou, a postdoctoral fellow in the lab, isolated a mutant that suppressed cdk-5, suggesting that the gene acts downstream or parallel to cdk-5. I mapped this mutant to the unc-101 locus, which encodes the μ- subunit of the AP1 complex. AP complexes are players in clathrin-mediated endocytosis, and the μ-subunit is the cargo recognition molecule within the complex. The AP1 complex plays a well-established role at the trans-golgi network in the cell body, but we present three results that suggest UNC-101 also acts at presynapses. The first result is the strong localization of UNC-101 at the synapse. The second result is that disrupting synaptic vesicle endocytosis (SVE) using genetic mutations causes a v similar phenotype as unc-101 mutations; animals mutant for unc-57/endophilin, unc- 26/synaptojanin, or dyn-1/dynamin 1 also suppress the cdk-5 dendritic phenotype. The third result is that the transport of synaptic vesicles from the synaptic region towards the dendrite decreases in an unc-101; cdk-5 double mutant compared to the cdk-5 single mutant, suggesting that UNC-101 is preventing retrograde flow from the synapses. While these results suggest a synaptic role for UNC-101, they do not exclude the possibility that UNC-101 also acts at the cell body. Indeed, I also show that UNC-101 affects the localization of postsynaptic proteins, which may occur by sorting proteins at the cell body. Additionally, postsynaptic proteins are unaffected by unc-57, suggesting an SVE-independent role for unc-101. Thus, I provide evidence that the AP1 subunit UNC-101 acts at presynapses and contributes to the molecular polarity of the DA9 motor neuron. The second part of my thesis contains my findings regarding a new system that I established to study synapse formation: the AFD thermosensory neuron. I found that the synaptic pattern in AFD is highly stereotyped, and I also isolated a mutant from a forward genetic screen that I mapped to the tax-4 locus. tax-4 and tax-2 encode two subunits of a cyclic nucleotide-gated channel that is necessary for sensory activity in AFD. When the genes are mutated, the localization of multiple presynaptic proteins is disrupted. Interestingly, they are not all similarly affected. Clusters of synaptic vesicles and the active zone protein SYD-2/liprin-α are dimmer and more numerous in tax-4 and tax-2 than wild-type animals. While SAD-1/SAD kinase clusters are also dimmer, there are fewer in tax-4 and tax-2 than wild-type animals. These results suggest that sensory activity can have different effects depending on the presynaptic vi protein. Thus, for the second part of my thesis, I describe the establishment of a new system to study synapse development, the results of a screen, and a link between neural activity and the localization of presynaptic proteins.
Building a Presynaptic Specialization
Author: Andrew Bennett Hellman
Publisher: Stanford University
ISBN:
Category :
Languages : en
Pages : 181
Book Description
The nervous system is comprised of a complex network of neurons that are connected by specialized structures called synapses. Each synapse contains a myriad of proteins that fulfill different functions, ranging from the release and reception of neurotransmitters to the maintenance and strengthening of the signals between neurons. Given the multitude of proteins present at the synapse, one question is how do they arrive and remain there? In my thesis, I use Caenorhabditis elegans to explore the cellular processes that contribute to the proper localization of important presynaptic proteins. In the first part of my thesis, I explored how presynaptic proteins are properly localized to the signal-sending process, called the axon, and excluded from the signalreceiving process, called the dendrite. In the motor neuron DA9, synaptic vesicles localize in a stereotyped region of the axon, but in cdk-5 mutants, 40% of the vesicle material is mislocalized to the dendrite. Chan-Yen Ou, a postdoctoral fellow in the lab, isolated a mutant that suppressed cdk-5, suggesting that the gene acts downstream or parallel to cdk-5. I mapped this mutant to the unc-101 locus, which encodes the μ- subunit of the AP1 complex. AP complexes are players in clathrin-mediated endocytosis, and the μ-subunit is the cargo recognition molecule within the complex. The AP1 complex plays a well-established role at the trans-golgi network in the cell body, but we present three results that suggest UNC-101 also acts at presynapses. The first result is the strong localization of UNC-101 at the synapse. The second result is that disrupting synaptic vesicle endocytosis (SVE) using genetic mutations causes a v similar phenotype as unc-101 mutations; animals mutant for unc-57/endophilin, unc- 26/synaptojanin, or dyn-1/dynamin 1 also suppress the cdk-5 dendritic phenotype. The third result is that the transport of synaptic vesicles from the synaptic region towards the dendrite decreases in an unc-101; cdk-5 double mutant compared to the cdk-5 single mutant, suggesting that UNC-101 is preventing retrograde flow from the synapses. While these results suggest a synaptic role for UNC-101, they do not exclude the possibility that UNC-101 also acts at the cell body. Indeed, I also show that UNC-101 affects the localization of postsynaptic proteins, which may occur by sorting proteins at the cell body. Additionally, postsynaptic proteins are unaffected by unc-57, suggesting an SVE-independent role for unc-101. Thus, I provide evidence that the AP1 subunit UNC-101 acts at presynapses and contributes to the molecular polarity of the DA9 motor neuron. The second part of my thesis contains my findings regarding a new system that I established to study synapse formation: the AFD thermosensory neuron. I found that the synaptic pattern in AFD is highly stereotyped, and I also isolated a mutant from a forward genetic screen that I mapped to the tax-4 locus. tax-4 and tax-2 encode two subunits of a cyclic nucleotide-gated channel that is necessary for sensory activity in AFD. When the genes are mutated, the localization of multiple presynaptic proteins is disrupted. Interestingly, they are not all similarly affected. Clusters of synaptic vesicles and the active zone protein SYD-2/liprin-α are dimmer and more numerous in tax-4 and tax-2 than wild-type animals. While SAD-1/SAD kinase clusters are also dimmer, there are fewer in tax-4 and tax-2 than wild-type animals. These results suggest that sensory activity can have different effects depending on the presynaptic vi protein. Thus, for the second part of my thesis, I describe the establishment of a new system to study synapse development, the results of a screen, and a link between neural activity and the localization of presynaptic proteins.
Publisher: Stanford University
ISBN:
Category :
Languages : en
Pages : 181
Book Description
The nervous system is comprised of a complex network of neurons that are connected by specialized structures called synapses. Each synapse contains a myriad of proteins that fulfill different functions, ranging from the release and reception of neurotransmitters to the maintenance and strengthening of the signals between neurons. Given the multitude of proteins present at the synapse, one question is how do they arrive and remain there? In my thesis, I use Caenorhabditis elegans to explore the cellular processes that contribute to the proper localization of important presynaptic proteins. In the first part of my thesis, I explored how presynaptic proteins are properly localized to the signal-sending process, called the axon, and excluded from the signalreceiving process, called the dendrite. In the motor neuron DA9, synaptic vesicles localize in a stereotyped region of the axon, but in cdk-5 mutants, 40% of the vesicle material is mislocalized to the dendrite. Chan-Yen Ou, a postdoctoral fellow in the lab, isolated a mutant that suppressed cdk-5, suggesting that the gene acts downstream or parallel to cdk-5. I mapped this mutant to the unc-101 locus, which encodes the μ- subunit of the AP1 complex. AP complexes are players in clathrin-mediated endocytosis, and the μ-subunit is the cargo recognition molecule within the complex. The AP1 complex plays a well-established role at the trans-golgi network in the cell body, but we present three results that suggest UNC-101 also acts at presynapses. The first result is the strong localization of UNC-101 at the synapse. The second result is that disrupting synaptic vesicle endocytosis (SVE) using genetic mutations causes a v similar phenotype as unc-101 mutations; animals mutant for unc-57/endophilin, unc- 26/synaptojanin, or dyn-1/dynamin 1 also suppress the cdk-5 dendritic phenotype. The third result is that the transport of synaptic vesicles from the synaptic region towards the dendrite decreases in an unc-101; cdk-5 double mutant compared to the cdk-5 single mutant, suggesting that UNC-101 is preventing retrograde flow from the synapses. While these results suggest a synaptic role for UNC-101, they do not exclude the possibility that UNC-101 also acts at the cell body. Indeed, I also show that UNC-101 affects the localization of postsynaptic proteins, which may occur by sorting proteins at the cell body. Additionally, postsynaptic proteins are unaffected by unc-57, suggesting an SVE-independent role for unc-101. Thus, I provide evidence that the AP1 subunit UNC-101 acts at presynapses and contributes to the molecular polarity of the DA9 motor neuron. The second part of my thesis contains my findings regarding a new system that I established to study synapse formation: the AFD thermosensory neuron. I found that the synaptic pattern in AFD is highly stereotyped, and I also isolated a mutant from a forward genetic screen that I mapped to the tax-4 locus. tax-4 and tax-2 encode two subunits of a cyclic nucleotide-gated channel that is necessary for sensory activity in AFD. When the genes are mutated, the localization of multiple presynaptic proteins is disrupted. Interestingly, they are not all similarly affected. Clusters of synaptic vesicles and the active zone protein SYD-2/liprin-α are dimmer and more numerous in tax-4 and tax-2 than wild-type animals. While SAD-1/SAD kinase clusters are also dimmer, there are fewer in tax-4 and tax-2 than wild-type animals. These results suggest that sensory activity can have different effects depending on the presynaptic vi protein. Thus, for the second part of my thesis, I describe the establishment of a new system to study synapse development, the results of a screen, and a link between neural activity and the localization of presynaptic proteins.
The Synapse
Author: Morgan Sheng
Publisher:
ISBN: 9781936113026
Category : Neural transmission
Languages : en
Pages : 0
Book Description
"A subject collection from Cold Spring Harbor perspectives in biology"--T.p. verso.
Publisher:
ISBN: 9781936113026
Category : Neural transmission
Languages : en
Pages : 0
Book Description
"A subject collection from Cold Spring Harbor perspectives in biology"--T.p. verso.
The Mouse Nervous System
Author: Charles Watson
Publisher: Academic Press
ISBN: 0123694973
Category : Medical
Languages : en
Pages : 815
Book Description
The Mouse Nervous System provides a comprehensive account of the central nervous system of the mouse. The book is aimed at molecular biologists who need a book that introduces them to the anatomy of the mouse brain and spinal cord, but also takes them into the relevant details of development and organization of the area they have chosen to study. The Mouse Nervous System offers a wealth of new information for experienced anatomists who work on mice. The book serves as a valuable resource for researchers and graduate students in neuroscience. Systematic consideration of the anatomy and connections of all regions of the brain and spinal cord by the authors of the most cited rodent brain atlases A major section (12 chapters) on functional systems related to motor control, sensation, and behavioral and emotional states A detailed analysis of gene expression during development of the forebrain by Luis Puelles, the leading researcher in this area Full coverage of the role of gene expression during development and the new field of genetic neuroanatomy using site-specific recombinases Examples of the use of mouse models in the study of neurological illness
Publisher: Academic Press
ISBN: 0123694973
Category : Medical
Languages : en
Pages : 815
Book Description
The Mouse Nervous System provides a comprehensive account of the central nervous system of the mouse. The book is aimed at molecular biologists who need a book that introduces them to the anatomy of the mouse brain and spinal cord, but also takes them into the relevant details of development and organization of the area they have chosen to study. The Mouse Nervous System offers a wealth of new information for experienced anatomists who work on mice. The book serves as a valuable resource for researchers and graduate students in neuroscience. Systematic consideration of the anatomy and connections of all regions of the brain and spinal cord by the authors of the most cited rodent brain atlases A major section (12 chapters) on functional systems related to motor control, sensation, and behavioral and emotional states A detailed analysis of gene expression during development of the forebrain by Luis Puelles, the leading researcher in this area Full coverage of the role of gene expression during development and the new field of genetic neuroanatomy using site-specific recombinases Examples of the use of mouse models in the study of neurological illness
The Neuroscience of Adolescence
Author: Adriana Galván
Publisher: Cambridge University Press
ISBN: 1107089921
Category : Medical
Languages : en
Pages : 341
Book Description
Written by an award-winning developmental neuroscientist, this is a comprehensive and cutting-edge account of the latest research on the adolescent brain.
Publisher: Cambridge University Press
ISBN: 1107089921
Category : Medical
Languages : en
Pages : 341
Book Description
Written by an award-winning developmental neuroscientist, this is a comprehensive and cutting-edge account of the latest research on the adolescent brain.
Handbook of Brain Microcircuits
Author: Gordon M. Shepherd
Publisher: Oxford University Press
ISBN: 0190636114
Category : Medical
Languages : en
Pages : 625
Book Description
In order to focus on principles, each chapter in this work is brief, organized around 1-3 wiring diagrams of the key circuits, with several pages of text that distil the functional significance of each microcircuit
Publisher: Oxford University Press
ISBN: 0190636114
Category : Medical
Languages : en
Pages : 625
Book Description
In order to focus on principles, each chapter in this work is brief, organized around 1-3 wiring diagrams of the key circuits, with several pages of text that distil the functional significance of each microcircuit
Development of the Nervous System
Author: Dan H. Sanes
Publisher: Elsevier
ISBN: 0080472494
Category : Science
Languages : en
Pages : 388
Book Description
Development of the Nervous System, Second Edition has been thoroughly revised and updated since the publication of the First Edition. It presents a broad outline of neural development principles as exemplified by key experiments and observations from past and recent times. The text is organized along a development pathway from the induction of the neural primordium to the emergence of behavior. It covers all the major topics including the patterning and growth of the nervous system, neuronal determination, axonal navigation and targeting, synapse formation and plasticity, and neuronal survival and death. This new text reflects the complete modernization of the field achieved through the use of model organisms and the intensive application of molecular and genetic approaches. The original, artist-rendered drawings from the First Edition have all been redone and colorized to so that the entire text is in full color. This new edition is an excellent textbook for undergraduate and graduate level students in courses such as Neuroscience, Medicine, Psychology, Biochemistry, Pharmacology, and Developmental Biology. - Updates information including all the new developments made in the field since the first edition - Now in full color throughout, with the original, artist-rendered drawings from the first edition completely redone, revised, colorized, and updated
Publisher: Elsevier
ISBN: 0080472494
Category : Science
Languages : en
Pages : 388
Book Description
Development of the Nervous System, Second Edition has been thoroughly revised and updated since the publication of the First Edition. It presents a broad outline of neural development principles as exemplified by key experiments and observations from past and recent times. The text is organized along a development pathway from the induction of the neural primordium to the emergence of behavior. It covers all the major topics including the patterning and growth of the nervous system, neuronal determination, axonal navigation and targeting, synapse formation and plasticity, and neuronal survival and death. This new text reflects the complete modernization of the field achieved through the use of model organisms and the intensive application of molecular and genetic approaches. The original, artist-rendered drawings from the First Edition have all been redone and colorized to so that the entire text is in full color. This new edition is an excellent textbook for undergraduate and graduate level students in courses such as Neuroscience, Medicine, Psychology, Biochemistry, Pharmacology, and Developmental Biology. - Updates information including all the new developments made in the field since the first edition - Now in full color throughout, with the original, artist-rendered drawings from the first edition completely redone, revised, colorized, and updated
Cellular Migration and Formation of Neuronal Connections
Author:
Publisher: Academic Press
ISBN: 0123973473
Category : Science
Languages : en
Pages : 1081
Book Description
The genetic, molecular, and cellular mechanisms of neural development are essential for understanding evolution and disorders of neural systems. Recent advances in genetic, molecular, and cell biological methods have generated a massive increase in new information, but there is a paucity of comprehensive and up-to-date syntheses, references, and historical perspectives on this important subject. The Comprehensive Developmental Neuroscience series is designed to fill this gap, offering the most thorough coverage of this field on the market today and addressing all aspects of how the nervous system and its components develop. Particular attention is paid to the effects of abnormal development and on new psychiatric/neurological treatments being developed based on our increased understanding of developmental mechanisms. Each volume in the series consists of review style articles that average 15-20pp and feature numerous illustrations and full references. Volume 2 offers 56 high level articles devoted mainly to Formation of Axons and Dendrites, Migration, Synaptogenesis, Developmental Sequences in the Maturation of Intrinsic and Synapse Driven Patterns. - Series offers 144 articles for 2904 full color pages addressing ways in which the nervous system and its components develop - Features leading experts in various subfields as Section Editors and article Authors - All articles peer reviewed by Section Editors to ensure accuracy, thoroughness, and scholarship - Volume 2 sections include coverage of mechanisms which regulate: the formation of axons and dendrites, cell migration, synapse formation and maintenance during development, and neural activity, from cell-intrinsic maturation to early correlated patterns of activity
Publisher: Academic Press
ISBN: 0123973473
Category : Science
Languages : en
Pages : 1081
Book Description
The genetic, molecular, and cellular mechanisms of neural development are essential for understanding evolution and disorders of neural systems. Recent advances in genetic, molecular, and cell biological methods have generated a massive increase in new information, but there is a paucity of comprehensive and up-to-date syntheses, references, and historical perspectives on this important subject. The Comprehensive Developmental Neuroscience series is designed to fill this gap, offering the most thorough coverage of this field on the market today and addressing all aspects of how the nervous system and its components develop. Particular attention is paid to the effects of abnormal development and on new psychiatric/neurological treatments being developed based on our increased understanding of developmental mechanisms. Each volume in the series consists of review style articles that average 15-20pp and feature numerous illustrations and full references. Volume 2 offers 56 high level articles devoted mainly to Formation of Axons and Dendrites, Migration, Synaptogenesis, Developmental Sequences in the Maturation of Intrinsic and Synapse Driven Patterns. - Series offers 144 articles for 2904 full color pages addressing ways in which the nervous system and its components develop - Features leading experts in various subfields as Section Editors and article Authors - All articles peer reviewed by Section Editors to ensure accuracy, thoroughness, and scholarship - Volume 2 sections include coverage of mechanisms which regulate: the formation of axons and dendrites, cell migration, synapse formation and maintenance during development, and neural activity, from cell-intrinsic maturation to early correlated patterns of activity
History of the Synapse
Author: Max R. Bennett
Publisher: CRC Press
ISBN: 0203302540
Category : Science
Languages : en
Pages : 351
Book Description
The History of the Synapse provides a history of those discoveries concerning the identification and function of synapses that provide the foundations for research during this new century with a personal view of the process by which new concepts have developed. Previously published as essays, the chapters in this book provide a history of various aspects of synaptic function, beginning with the evolution over two and a half thousand years and how progress was made in the establishment of a conceptual structure that would allow the synapse to be identified at the beginning of the 20th century. Numerous illustrations explain either the technical approach or the experimental finding.
Publisher: CRC Press
ISBN: 0203302540
Category : Science
Languages : en
Pages : 351
Book Description
The History of the Synapse provides a history of those discoveries concerning the identification and function of synapses that provide the foundations for research during this new century with a personal view of the process by which new concepts have developed. Previously published as essays, the chapters in this book provide a history of various aspects of synaptic function, beginning with the evolution over two and a half thousand years and how progress was made in the establishment of a conceptual structure that would allow the synapse to be identified at the beginning of the 20th century. Numerous illustrations explain either the technical approach or the experimental finding.
The Oxford Handbook of Developmental Psychology, Vol. 1
Author: Philip David Zelazo
Publisher: Oxford University Press
ISBN: 0199958459
Category : Medical
Languages : en
Pages : 1049
Book Description
This handbook provides a comprehensive survey of what is now known about psychological development, from birth to biological maturity, and it highlights how cultural, social, cognitive, neural, and molecular processes work together to yield human behavior and changes in human behavior.
Publisher: Oxford University Press
ISBN: 0199958459
Category : Medical
Languages : en
Pages : 1049
Book Description
This handbook provides a comprehensive survey of what is now known about psychological development, from birth to biological maturity, and it highlights how cultural, social, cognitive, neural, and molecular processes work together to yield human behavior and changes in human behavior.
The Autisms
Author: Craig M. Powell
Publisher: Oxford University Press, USA
ISBN: 0199744319
Category : Family & Relationships
Languages : en
Pages : 421
Book Description
The science of autism has seen tremendous breakthroughs in the past few decades. A multitude of relatively rare mutations have been identified to explain around 15 % of autism cases with many of these genetic causes systematically examined in animal models. This marriage of human genetics and basic neurobiology has led to major advances in our understanding of how these genetic mutations alter brain function and help to better understand the human disease. These scientific approaches are leading to the identification of potential therapeutic targets for autism that can be tested in the very same genetic models and hopefully translated into novel, rational therapies. The Autisms: Molecules to Model Systems provides a roadmap to many of these genetic causes of autism and clarifies what is known at the molecular, cellular, and circuit levels. Focusing on tractable genetic findings in human autism and painstakingly dissecting the underlying neurobiology, the book explains, is the key to understanding the pathophysiology of autism and ultimately to identifying novel treatments.
Publisher: Oxford University Press, USA
ISBN: 0199744319
Category : Family & Relationships
Languages : en
Pages : 421
Book Description
The science of autism has seen tremendous breakthroughs in the past few decades. A multitude of relatively rare mutations have been identified to explain around 15 % of autism cases with many of these genetic causes systematically examined in animal models. This marriage of human genetics and basic neurobiology has led to major advances in our understanding of how these genetic mutations alter brain function and help to better understand the human disease. These scientific approaches are leading to the identification of potential therapeutic targets for autism that can be tested in the very same genetic models and hopefully translated into novel, rational therapies. The Autisms: Molecules to Model Systems provides a roadmap to many of these genetic causes of autism and clarifies what is known at the molecular, cellular, and circuit levels. Focusing on tractable genetic findings in human autism and painstakingly dissecting the underlying neurobiology, the book explains, is the key to understanding the pathophysiology of autism and ultimately to identifying novel treatments.