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Titlebook: RibosomesStructure, Function, and Dynamics; Marina V. Rodnina,Wolfgang Wintermeyer,Rachel Gree Book 2011 Springer-Verlag GmbH Wien 2011 ge

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發(fā)表于 2025-3-21 17:09:07 | 只看該作者 |倒序瀏覽 |閱讀模式
書目名稱RibosomesStructure, Function, and Dynamics
編輯Marina V. Rodnina,Wolfgang Wintermeyer,Rachel Gree
視頻videohttp://file.papertrans.cn/831/830177/830177.mp4
概述First ribosome book since 2001.Nobel Prize Chemistry 2009 - The Ribosome.Includes chapters of all three Nobel Prize winners.Comprehensive in scope.Includes supplementary material:
圖書封面Titlebook: RibosomesStructure, Function, and Dynamics;  Marina V. Rodnina,Wolfgang Wintermeyer,Rachel Gree Book 2011 Springer-Verlag GmbH Wien 2011 ge
描述The ribosome is a macromolecular machine that synthesizes proteins with a high degree of speed and accuracy. Our present understanding of its structure, function and dynamics is the result of six decades of research. This book collects over 40 articles based on the talks presented at the 2010 Ribosome Meeting, held in Orvieto, Italy, covering all facets of the structure and function of the ribosome. New high-resolution crystal structures of functional ribosome complexes and cryo-EM structures of translating ribosomes are presented, while partial reactions of translation are examined in structural and mechanistic detail, featuring translocation as a most dynamic process. Mechanisms of initiation, both in bacterial and eukaryotic systems, translation termination, and novel details of the functions of the respective factors are described. Structure and interactions of the nascent peptide within, and emerging from, the ribosomal peptide exit tunnel are addressed in several articles. Structural and single-molecule studies reveal a picture of the ribosome exhibiting the energy landscape of a processive Brownian machine. The collection provides up-to-date reviews which will serve as a sou
出版日期Book 2011
關(guān)鍵詞gene expression
版次1
doihttps://doi.org/10.1007/978-3-7091-0215-2
isbn_softcover978-3-7091-1928-0
isbn_ebook978-3-7091-0215-2
copyrightSpringer-Verlag GmbH Wien 2011
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Modifications of ribosomal RNA: From enzymes to functionoduce the majority of their rRNA modifications (Decatur and Fournier, 2002). By contrast, bacteria have developed specific enzymes for each one of the (fewer) modifications they have. Nevertheless, there are many different rRNA modifications in bacteria. Despite intensive study for several decades,
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Translation initiation at the root of the cold-shock translational biasroteins synthesized during cold adaptation and in cold-adapted cells are: (i) to deal with unfavorable secondary structures of nucleic acids induced/stabilized by the cold, which are expected to hinder basic functions such as transcription, ribosome assembly, and translation; (ii) to oppose the cold
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Recruiting knotty partners: The roles of translation initiation factors in mRNA recruitment to the ef the mRNA that, through a number of protein-protein interactions, brings the ribosome to the very beginning of the mRNA. Protein factors are also thought to be responsible for removing secondary structure and RNA binding proteins from the RNA to create a single-stranded region for the ribosome to b
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Mechanisms of decoding and peptide bond formation the nascent peptide chain by one amino acid. The functional centers of the ribosomes are composed mostly of rRNA. Thus, understanding decoding and peptide bond formation requires answers to several fundamental questions: (i) how does the rRNA machinery recognize tRNAs and mRNAs? (ii) how does the r
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Book 2011thin, and emerging from, the ribosomal peptide exit tunnel are addressed in several articles. Structural and single-molecule studies reveal a picture of the ribosome exhibiting the energy landscape of a processive Brownian machine. The collection provides up-to-date reviews which will serve as a sou
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Steven T. Gregory,Hasan Demirci,Jennifer F. Carr,Riccardo Belardinelli,Jill R. Thompson,Dale Cameron
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