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The ribosome as an optimal decoder: A lesson in molecular recognition

机译:核糖体作为最佳解码器:分子识别课程

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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.
机译:核糖体是一个复杂的分子机器,为了合成蛋白质,必须通过将其密码子与匹配的tRNA配对来解码mRNA。解码是适应性的主要决定因素,需要在许多类似竞争者中准确,快速地选择正确的tRNA。然而,尚不清楚现代核糖体,特别是其在解码期间的大构象变化,是适应于其作为解码器的任务的结果还是其他限制的结果。在这里,我们得出的能量格局提供了竞争底物之间的最佳区分,从而实现了最佳的tRNA解码。我们显示,以这种方式雕刻了原核糖体的测量景观。该模型表明核糖体和tRNA的构象变化在解码过程中是获得最佳解码器的手段。我们的分析提出了一种可能被分子识别系统广泛使用的通用机制。

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