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首页> 外文期刊>Biochemistry >Stoichiometry for the elongation factor Tu.aminoacyl-tRNA complex switches with temperature.
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Stoichiometry for the elongation factor Tu.aminoacyl-tRNA complex switches with temperature.

机译:伸长因子Tu.aminoacyl-tRNA复合物的化学计量随温度而变化。

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In bacterial protein synthesis binding of an aminoacyl-transferRNA (aa-tRNA) to the ribosomal acceptor site (A-site) is catalyzed by elongation factor Tu (EF-Tu). Two guanosine triphosphates (GTPs) are hydrolyzed on EF-Tu for every bound aa-tRNA. This was rationalized by the notion of an extended ternary complex, consisting of two EF-Tu.GTPs bound to a single aa-tRNA. In this work, we combine fast kinetics with RNase A protection experiments to measure the stoichiometry between EF-Tu.GTP and aa-tRNA at 37 degrees C, where the binding is weak. We find a 2:1 stoichiometry between EF-Tu.GTP and aa-tRNA at 37 degrees C, but at 0 degree C, under otherwise similar conditions, the stoichiometry of the complex is close to 1:1. These results suggest alternative pathways for aa-tRNA binding to ribosomes, since two GTPs are hydrolyzed per peptide bond at both temperatures. At 37 degrees C, aa-tRNA enters the A-site in a pentameric complex with two EF-Tu's on which two GTPs are hydrolyzed in synchrony, when cognate codon-anticodon contact is established. This pentameric model also explains how two GTPs can be hydrolyzed on EF-Tu, without rejection of 50% of the cognate aa-tRNAs in proofreading. At 0 degree C, in contrast, two ordinary ternary complexes may form a pentameric complex on, rather than off, the ribosome. When the two EF-Tu bound GTPs are hydrolyzed, one aa-tRNA enters the A-site, and the other dissociates to the free state.
机译:在细菌蛋白质合成中,延伸因子Tu(EF-Tu)催化氨基酰基转移RNA(aa-tRNA)与核糖体受体位点(A-site)的结合。对于每个结合的aa-tRNA,两个鸟苷三磷酸(GTP)在EF-Tu上水解。这是通过扩展三元复合物的概念合理化的,该三元复合物由结合到单个aa-tRNA的两个EF-Tu.GTP组成。在这项工作中,我们将快速动力学与RNase A保护实验相结合,以测量在37°C下结合力弱的EF-Tu.GTP和aa-tRNA之间的化学计量。我们发现EF-Tu.GTP与aa-tRNA在37°C时为2:1的化学计量关系,但在0°C时,在其他类似条件下,复合物的化学计量比接近1:1。这些结果表明aa-tRNA与核糖体结合的替代途径,因为在两个温度下每个肽键均水解了两个GTP。在37摄氏度时,当建立同源密码子-反密码子接触时,aa-tRNA进入具有两个EF-Tu的五聚体复合物的A位点,两个EF-Tu同步水解。该五聚体模型还解释了如何在EF-Tu上水解两个GTP,而不会在校对中拒绝50%的同源aa-tRNA。相反,在0℃下,两个普通的三元复合物可以在核糖体上而不是在核糖体上形成五聚体复合物。当两个EF-Tu结合的GTP水解时,一个aa-tRNA进入A位点,另一个则解离成游离态。

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