New Insights into Ribosome Structure and Function
Новые сведения о структуре и функции рибосомы
2018-06-14
SCID: 54.1/nrz4qjbd
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cryo-electron microscopypeptide elongationribosome structuresstructural studies of translationtranslation initiation
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Abstract (AI)
In the past 4 years, because of the advent of new cameras, many ribosome structures have been solved by cryoelectron microscopy (cryo-EM) at high, often near-atomic resolution, bringing new mechanistic insights into the processes of translation initiation, peptide elongation, termination, and recycling. Thus, cryo-EM has joined X-ray crystallography as a powerful technique in structural studies of translation. The significance of this new development is that structures of ribosomes in complex with their functional binding partners can now be determined to high resolution in multiple states as they perform their work. The aim of this article is to provide an overview of these new studies and assess the contributions they have made toward an understanding of translation and translational control.
Key Findings
1
Advances in camera technology over the past 4 years enabled many ribosome structures to be solved by cryo-EM at high, often near-atomic, resolution.
2
Cryo-EM complements X-ray crystallography as a powerful structural technique for studying translation, allowing high-resolution structures of ribosome complexes with functional binding partners.
3
Cryo-EM now provides mechanistic insights into translation initiation, peptide elongation, termination, and recycling by resolving ribosomes in multiple functional states.
4
High-resolution cryo-EM structures permit determination of ribosome complexes in different functional states as they perform their work, improving understanding of translational control.
Research Object
Ribosome structures (including ribosomes in complex with functional binding partners) characterized by cryo-electron microscopy
Research Subject
Structural and mechanistic insights into translation processes (initiation, peptide elongation, termination, recycling) and translational control derived from high-resolution cryo-EM structures in multiple functional states
Publication Details
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2018-06-14
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