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Ribosomes containing mutants of L4 ribosomal protein from Thermus thermophilus display multiple defects in ribosomal functions and sensitivity against erythromycin

机译:含有嗜热栖热菌L4核糖体蛋白突变体的核糖体在核糖体功能和对红霉素的敏感性方面表现出多种缺陷

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摘要

Protein L4 from Thermus thermophilus (TthL4) was heterologously overproduced in Escherichia coli cells. To study the implication of the extended loop of TthL4 in the exit-tunnel and peptidyltransferase functions, the highly conserved E56 was replaced by D or Q, while the semiconserved G55 was changed to E or S. Moreover, the sequence -G55E56- was inverted to -E55G56-. When we incorporated these mutants into E. coli ribosomes and investigated their impact on poly(Phe) synthesis, high variations in the synthetic activity and response to erythromycin of the resulting ribosomes were observed. In the absence of erythromycin, ribosomes harboring mutations G55E and E56D in TthL4 protein were characterized by low activity in synthesizing poly(Phe) and decreased capability in binding tRNA at the A site. On the other hand, ribosomes possessing mutations G55E, G55S, G55E-E56G, or E56Q in TthL4 protein were unexpectedly more sensitive to erythromycin. Evidence in support of these findings was drawn by in vivo experiments, assessing the erythromycin sensitivity of E. coli cells expressing wild-type or mutant TthL4 proteins. Our results emphasize the role of the extended loop of L4 ribosomal protein in the exit-tunnel and peptidyltransferase center functions.
机译:来自嗜热栖热菌(TthL4)的L4蛋白在大肠杆菌细胞中异源过量产生。为了研究TthL4延伸环在出口隧道和肽基转移酶功能中的含义,将高度保守的E56替换为D或Q,将半保守的G55更改为E或S。此外,将序列-G55E56-颠倒了到-E55G56-。当我们将这些突变体并入大肠杆菌核糖体中并研究它们对聚(Phe)合成的影响时,观察到合成活性和所得核糖体对红霉素的反应存在很大差异。在不存在红霉素的情况下,TthL4蛋白中具有G55E和E56D突变的核糖体的特征是合成聚(Phe)的活性较低,并且在A位点的结合tRNA的能力降低。另一方面,在TthL4蛋白中具有G55E,G55S,G55E-E56G或E56Q突变的核糖体出乎意料地对红霉素更敏感。通过体内实验得出了支持这些发现的证据,评估了表达野生型或突变型TthL4蛋白的大肠杆菌细胞对红霉素的敏感性。我们的研究结果强调了L4核糖体蛋白延伸环在出口通道和肽基转移酶中心功能中的作用。

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