Merck
CN

The ribosome as an optimal decoder: a lesson in molecular recognition.

Cell (2013-04-16)
Yonatan Savir, Tsvi Tlusty
摘要

The ribosome is a complex molecular machine that, in order to synthesize proteins, has to decode mRNAs by pairing their codons with matching tRNAs. Decoding is a major determinant of fitness and requires accurate and fast selection of correct tRNAs among many similar competitors. However, it is unclear whether the modern ribosome, and in particular its large conformational changes during decoding, are the outcome of adaptation to its task as a decoder or the result of other constraints. Here, we derive the energy landscape that provides optimal discrimination between competing substrates and thereby optimal tRNA decoding. We show that the measured landscape of the prokaryotic ribosome is sculpted in this way. This model suggests that conformational changes of the ribosome and tRNA during decoding are means to obtain an optimal decoder. Our analysis puts forward a generic mechanism that may be utilized broadly by molecular recognition systems.

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Sigma-Aldrich
核糖核酸,转移 来源于大肠杆菌, Type XX, Strain W, lyophilized powder
Sigma-Aldrich
核糖核酸,转移 来源于面包酵母(酿酒酵母), Type X-SA, lyophilized powder
Sigma-Aldrich
核糖核酸,转移 来源于面包酵母(酿酒酵母), buffered aqueous solution
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核糖核酸,转移 来源于面包酵母(酿酒酵母), buffered aqueous solution
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Ribonucleic acid, transfer from bovine liver, Type XI, lyophilized powder
Sigma-Aldrich
核糖核酸,转移 来源于小麦胚芽, Type V, 15-19 units/mg solid