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来自大肠杆菌的核糖体蛋白S15通过将核糖体捕获在mRNA起始加载位点来调节其自身的翻译。

Ribosomal protein S15 from Escherichia coli modulates its own translation by trapping the ribosome on the mRNA initiation loading site.

作者信息

Philippe C, Eyermann F, Bénard L, Portier C, Ehresmann B, Ehresmann C

机构信息

Unité Propre de Recherche 9002 du Centre National de la Recherche Scientifique, Institut de Biologie Moléculaire et Cellulaire, Strasbourg, France.

出版信息

Proc Natl Acad Sci U S A. 1993 May 15;90(10):4394-8. doi: 10.1073/pnas.90.10.4394.

Abstract

From genetic and biochemical evidence, we previously proposed that S15 inhibits its own translation by binding to its mRNA in a region overlapping the ribosome loading site. This binding was postulated to stabilize a pseudoknot structure that exists in equilibrium with two stem-loops. Here, we use "toeprint" experiments with Moloney murine leukemia virus reverse transcriptase to analyze the effect of S15 on the formation of the ternary mRNA-30S-tRNA(fMet) complex. We show that the binding of the 30S subunit on the mRNA stops reverse transcriptase near position +10, corresponding to the 3' terminus of the pseudoknot, most likely by stabilizing the pseudoknot conformation. Furthermore, S15 is found to stabilize the binary 30S-mRNA complex. When the ternary 30S-mRNA-tRNA(fMet) complex is formed, a toeprint is observed at position +17. This toeprint progressively disappears when the ternary complex is formed in the presence of increasing concentrations of S15, while a shift from position +17 to position +10 is observed. Beside, RNase T1 footprinting experiments reveal the simultaneous binding of S15 and 30S subunit on the mRNA. Otherwise, we show by filter binding assays that initiator tRNA remains bound to the 30S subunit even in the presence of S15. Our results indicate that S15 prevents the formation of a functional ternary 30S-mRNA-tRNA(fMet) complex, the ribosome being trapped in a preternary 30S-mRNA-tRNA(fMet) complex.

摘要

基于遗传学和生物化学证据,我们之前提出S15通过与自身mRNA上重叠核糖体装载位点的区域结合来抑制其自身翻译。据推测,这种结合可稳定一种与两个茎环处于平衡状态的假结结构。在此,我们使用莫洛尼氏鼠白血病病毒逆转录酶进行“足迹”实验,以分析S15对三元mRNA - 30S - tRNA(fMet)复合物形成的影响。我们发现30S亚基与mRNA的结合会使逆转录酶在 +10位置附近停止,该位置对应假结的3'末端,很可能是通过稳定假结构象实现的。此外,发现S15可稳定二元30S - mRNA复合物。当形成三元30S - mRNA - tRNA(fMet)复合物时,在 +17位置观察到一个足迹。当在浓度不断增加的S15存在下形成三元复合物时,这个足迹会逐渐消失,同时观察到从 +17位置向 +10位置的移动。此外,核糖核酸酶T1足迹实验揭示了S15和30S亚基在mRNA上的同时结合。另外,我们通过滤膜结合试验表明,即使在有S15存在的情况下,起始tRNA仍与30S亚基结合。我们的结果表明,S15可阻止功能性三元30S - mRNA - tRNA(fMet)复合物的形成,核糖体被困在前三元30S - mRNA - tRNA(fMet)复合物中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9334/46517/5e1ac30aa08a/pnas01462-0076-a.jpg

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