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Role of large thermal fluctuations and magnesium ions in t-RNA selectivity of the ribosome

机译:大的热波动和镁离子在核糖体t-RNA选择性中的作用

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摘要

The fidelity of translation selection begins with the base pairing of codon-anticodon complex between the m-RNA and tRNAs. Binding of cognate and near-cognate tRNAs induces 30S subunit of the ribosome to wrap around the ternary complex, EF-Tu(GTP)aa-tRNA. We have proposed that large thermal fluctuations play a crucial role in the selection process. To test this conjecture, we have developed a theoretical technique to determine the probability that the ternary complex, as a result of large thermal fluctuations, forms contacts leading to stabilization of the GTPase activated state. We argue that the configurational searches for such processes are in the tail end of the probability distribution and show that the probability for this event is localized around the most likely configuration. Small variations in the repositioning of cognate relative to near-cognate complexes lead to rate enhancement of the cognate complex. The binding energies of over a dozen unique site-bound magnesium structural motifs are investigated and provide insights into the nature of interaction of divalent metal ions with the ribosome.
机译:翻译选择的保真度始于m-RNA和tRNA之间的密码子-反密码子复合物的碱基配对。同源和近同源tRNA的结合诱导核糖体的30S亚基包裹三元复合物EF-Tu(GTP)aa-tRNA。我们提出,较大的热波动在选择过程中起着至关重要的作用。为了验证这一推测,我们开发了一种理论技术来确定由于大的热波动而导致三元复合物形成导致GTPase激活状态稳定的接触的可能性。我们认为,此类过程的构型搜索位于概率分布的末端,并表明此事件的概率位于最可能的构型附近。同源物相对于近同源物复合物的重新定位中的小变化导致同源物复合物的速率增强。研究了十几个独特的定点结合的镁结构基序的结合能,并为二价金属离子与核糖体相互作用的性质提供了见识。

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