High-resolution, Single-molecule Measurements of Transcription and RNA Folding

High-resolution, Single-molecule Measurements of Transcription and RNA Folding PDF Author: William James Greenleaf
Publisher:
ISBN:
Category :
Languages : en
Pages : 296

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High-resolution, Single-molecule Measurements of Transcription and RNA Folding

High-resolution, Single-molecule Measurements of Transcription and RNA Folding PDF Author: William James Greenleaf
Publisher:
ISBN:
Category :
Languages : en
Pages : 296

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Biophysics of RNA Folding

Biophysics of RNA Folding PDF Author: Rick Russell
Publisher: Springer Science & Business Media
ISBN: 1461449545
Category : Science
Languages : en
Pages : 238

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Book Description
This volume, written by experts in the field, discusses the current understanding of the biophysical principles that govern RNA folding, with featured RNAs including the ribosomal RNAs, viral RNAs, and self-splicing introns. In addition to the fundamental features of RNA folding, the central experimental and computational approaches in the field are presented with an emphasis on their individual strengths and limitations, and how they can be combined to be more powerful than any method alone; these approaches include NMR, single molecule fluorescence, site-directed spin labeling, structure mapping, comparative sequence analysis, graph theory, course-grained 3D modeling, and more. This volume will be of interest to professional researchers and advanced students entering the field of RNA folding.

Visualising RNA Folding Dynamics in Crowded Environments and with Single-molecule Resolution

Visualising RNA Folding Dynamics in Crowded Environments and with Single-molecule Resolution PDF Author: Bishnu Paudel
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Single-molecule Measurements of Transcript Elongation and Termination by RNA Polymerase

Single-molecule Measurements of Transcript Elongation and Termination by RNA Polymerase PDF Author: Matthew Herbert Larson
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Transcription by RNAP is highly regulated in both prokaryotic and eukaryotic cells, and the ability of the cell to differentiate and respond to its environment is largely due to this regulation. During elongation, for example, RNAP is known to momentarily halt in response to certain cellular signals, and this pause state has been implicated in the regulation of gene expression in both prokaryotic and eukaryotic organisms. In addition, once RNAP reaches the end of a gene, it must reliably terminate and release the newly-transcribed RNA, providing another potential point of regulation within different cell types. Both of these steps are crucial to ensure proper gene expression. In this dissertation, I focus on transcription elongation by both prokaryotic and eukaryotic RNA polymerases, as well as their regulation through pausing and termination. To probe the role of RNA hairpins in transcriptional pausing, a novel single-molecule "RNA-pulling" assay was used to block the formation of secondary structure in the nascent transcript. Force along the RNA did not significantly affect transcription elongation rates, pause frequencies, or pause lifetimes, indicating that short "ubiquitous" pauses are not a consequence of RNA hairpins. Force-based single-molecule techniques were also used to study the mechanism and energetics of transcription termination in bacteria. The data suggest two separate mechanisms for termination: one that involves hypertranslocation of RNAP along the DNA, and one that involves shearing of the RNA:DNA hybrid within the enzyme. In addition, a quantitative energetic model is presented that successfully predicts the termination efficiency of both wild-type and mutant terminators. Finally, the implementation of a novel optical-trapping assay capable of directly observing transcription by eukaryotic RNA polymerase II (RNAPII) molecules is described. This approach was used to probe the RNAPII nucleotide-addition cycle, as well as the role of the trigger loop (a conserved subdomain) in elongation. The results are consistent with a Brownian ratchet model of elongation which incorporates a secondary NTP binding site, and the trigger loop was found to modulate translocation, NTP binding, and catalysis, as well as substrate selection and mismatch recognition by RNAPII.

An Introduction to Single Molecule Biophysics

An Introduction to Single Molecule Biophysics PDF Author: Yuri L. Lyubchenko
Publisher: CRC Press
ISBN: 1351333127
Category : Science
Languages : en
Pages : 240

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Book Description
This book gives an accessible, detailed overview on techniques of single molecule biophysics (SMB), showing how they are applied to numerous biological problems associated with understanding the molecular mechanisms of DNA replication, transcription, and translation, as well as functioning of molecular machines. It covers major single molecule imaging and probing techniques, highlighting key strengths and limitations of each method using recent examples. The chapters begin with a discussion of single molecule fluorescence techniques followed by an overview of the atomic force microscope and its use for direct time-lapse visualization of dynamics of molecular complexes at the nanoscale, as well as applications in measurements of interactions between molecules and mechanical properties of isolated molecules and their complexes. The next chapters address magnetic tweezers and optical tweezers, including instrumentation, fundamentals of operation, and applications. A final chapter turns to nanopore transport and nanopore-based DNA sequencing technology that will play a major role in next-generation genomics and healthcare applications.

RNA Structure and Folding

RNA Structure and Folding PDF Author: Dagmar Klostermeier
Publisher: Walter de Gruyter
ISBN: 3110284952
Category : Science
Languages : en
Pages : 432

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Book Description
While structure-function relationships of proteins have been studied for a long time, structural studies of RNA face additional challenges. Nevertheless, with the continuous discovery of novel RNA molecules with key cellular functions and of novel pathways and interaction networks, the need for structural information of RNA is still increasing. This volume provides an introduction into techniques to assess structure and folding of RNA. Each chapter explains the theoretical background of one technique, and illustrates possibilities and limitations in selected application examples.

Handbook of Single-Molecule Biophysics

Handbook of Single-Molecule Biophysics PDF Author: Peter Hinterdorfer
Publisher: Springer Science & Business Media
ISBN: 0387764976
Category : Science
Languages : en
Pages : 634

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Book Description
This handbook describes experimental techniques to monitor and manipulate individual biomolecules, including fluorescence detection, atomic force microscopy, and optical and magnetic trapping. It includes single-molecule studies of physical properties of biomolecules such as folding, polymer physics of protein and DNA, enzymology and biochemistry, single molecules in the membrane, and single-molecule techniques in living cells.

Protein and RNA Folding: from Bulk Towards High Throughput Single Molecule Experiments

Protein and RNA Folding: from Bulk Towards High Throughput Single Molecule Experiments PDF Author: Krishnarjun Sarkar
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Bacterial Chromatin

Bacterial Chromatin PDF Author: Remus T. Dame
Publisher: Springer Nature
ISBN: 1071639307
Category :
Languages : en
Pages : 654

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Single Molecule RNA Folding Studied with Optical Trapping

Single Molecule RNA Folding Studied with Optical Trapping PDF Author: Jeffrey Robert Vieregg
Publisher:
ISBN:
Category :
Languages : en
Pages : 468

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