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Titlebook: Biophysical approaches to translational control of gene expression; Jonathan D. Dinman Book 2013 Springer Science+Business Media New York

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发表于 2025-3-21 16:32:10 | 显示全部楼层 |阅读模式
期刊全称Biophysical approaches to translational control of gene expression
影响因子2023Jonathan D. Dinman
视频video
发行地址Consists of up-to-date and comprehensive reviews of research and relevant new imaging and structural approaches.Addresses major advances in researching cell’s molecular machinery through analytical, c
学科分类Biophysics for the Life Sciences
图书封面Titlebook: Biophysical approaches to translational control of gene expression;  Jonathan D. Dinman Book 2013 Springer Science+Business Media New York
影响因子.This book provides a premier resource on understanding the ribosome‘s essential nature and how it interacts with other proteins and nucleic acids to control protein synthesis. As one of the central foundations in our understanding of the biology at the molecular level, this topic appeals to a wide audience, from bench researcher to clinician.  With the advent of atomic scale structures, methods to visualize and separate individual molecules, and the computational power to model the complex interactions of over a million atoms at once, our understanding of how gene expression is controlled at the level of protein translation is now deeply ensconced in the biophysical realm..
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Structural Analyses of the Ribosome by Chemical Modification Methods,to both RNA structure and dynamics. This chapter describes past and current methods of performing structural analysis of RNA using chemical modification techniques. We explore both radioactive and nonradioactive methodologies, a variety of reagents available to probe for different types of informati
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Methods for Studying the Interactions of Translation Factors with the Ribosome, decades toward this goal. Cross-linking and footprinting were among the first methods used to probe the interactions of translation factors with the ribosome and the structures of ribosomal complexes. Since publication of the first high-resolution structures, these methods have continued to provide
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Riboproteomic Approaches to Understanding IRES Elements,t initiation mechanism that operates in the vast majority of mRNAs and the internal ribosome entry site (IRES)-dependent mechanism. IRES elements, first discovered in picornaviruses, are .-acting RNA sequences that form secondary and tertiary structures and recruit the translation machinery using a
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Investigating RNAs Involved in Translational Control by NMR and SAXS,mine molecular structure. Here, we review the use of NMR and SAXS for the structural analysis of RNA molecules, with a focus on RNAs involved in translational control. Practical considerations, experimental requirements, and data analysis are discussed. We also review a recently developed hybrid app
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,Analyses of RNA–Ligand Interactions by Fluorescence Anisotropy,s. By manipulating assay design, it is possible to extract equilibrium binding constants down to the low or even sub-nanomolar range, as well as measure reaction on- and off-rates, changes in enthalpy and entropy, and RNA-binding site size. These tools are invaluable for comparing and contrasting po
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