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Two conformational states in the crystal structure of the Homo sapiens cytoplasmic ribosomal decoding A site

机译:智人胞质核糖体解码A位点晶体结构的两个构象态

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The decoding A site of the small ribosomal subunit is an RNA molecular switch, which monitors codon–anticodon interactions to guarantee translation fidelity. We have solved the crystal structure of an RNA fragment containing two Homo sapiens cytoplasmic A sites. Each of the two A sites presents a different conformational state. In one state, adenines A1492 and A1493 are fully bulged-out with C1409 forming a wobble-like pair to A1491. In the second state, adenines A1492 and A1493 form non-Watson–Crick pairs with C1409 and G1408, respectively while A1491 bulges out. The first state of the eukaryotic A site is, thus, basically the same as in the bacterial A site with bulging A1492 and A1493. It is the state used for recognition of the codon/anticodon complex. On the contrary, the second state of the H.sapiens cytoplasmic A site is drastically different from any of those observed for the bacterial A site without bulging A1492 and A1493.
机译:小核糖体亚基的一个解码位点是一个RNA分子开关,它监视密码子-反密码子的相互作用以保证翻译的准确性。我们已经解决了包含两个智人细胞质A位点的RNA片段的晶体结构。两个A位点中的每一个都呈现不同的构象状态。在一种状态下,腺嘌呤A1492和A1493完全凸出,而C1409与A1491形成类似摆动的对。在第二种状态下,腺嘌呤A1492和A1493分别与C1409和G1408形成非Watson-Crick对,而A1491突出。因此,真核生物A位点的第一状态基本上与细菌A位点中具有鼓胀的A1492和A1493的状态相同。它是用于识别密码子/反密码子复合体的状态。相反,智人胞质A位点的第二种状态与观察到的细菌A位点的任何状态都大不相同,而没有鼓胀A1492和A1493。

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