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一种调节性核糖体蛋白的比较解剖学

Comparative anatomy of a regulatory ribosomal protein.

作者信息

Worbs Michael, Wahl Markus C, Lindahl Lasse, Zengel Janice M

机构信息

Department of Biological Sciences, University of Maryland Baltimore County (UMBC), 1000 Hilltop Circle, MD, Baltimore, USA

出版信息

Biochimie. 2002 Aug;84(8):731-43. doi: 10.1016/s0300-9084(02)01410-4.

Abstract

Ribosomal protein L4 is a crucial folding mediator and an important architectural component of the large ribosomal subunit. Furthermore, Escherichia coli L4 produced in excess of its rRNA binding sites downregulates the transcription and translation of its own S10 operon, encoding 11 ribosomal proteins. Genetic experiments and the crystal structure of Thermotoga maritima L4 had implicated separable regions on L4 in ribosome association and expression control while RNA competition experiments and the regulatory capacity of heterologous L4 had suggested an overlap of the protein sequences involved in the two functions. We report herein that contrary to other foreign bacterial L4 proteins, L4 from T. maritima only weakly controlled expression of the S10 operon in E. coli. Also, wildtype T. maritima L4 was more weakly associated with E. coli ribosomes than with the E. coli analog. Rational mutageneses were performed to try to increase the regulatory competence of T. maritima L4. The ribosome incorporation of the mutant proteins was also investigated. Two different deletions removing T. maritima-specific sequences had little effects on regulation although one did improve ribosome association. Interestingly, a set of multiple mutations, which rendered the region around helices alpha4 and alpha5 in T. maritima L4 more E. coli-like, had no influence on the incorporation of the protein into the large ribosomal subunit but considerably improved its regulatory potential. Therefore, the area around helices alpha4 and alpha5, which is critical for the initial folding steps of the large subunit, is also a central element of autogenous control, presumably by contacting the S10 mRNA leader. Ribosome association is compounded at later stages of assembly by additional rRNA contacts through L4 areas which do not participate in regulation. Similarly, sequences outside the alpha4/alpha5 region aid expression control.

摘要

核糖体蛋白L4是一种关键的折叠介导因子,也是大核糖体亚基的重要结构组成部分。此外,大肠杆菌中产生的L4如果超过其rRNA结合位点,会下调其自身S10操纵子的转录和翻译,该操纵子编码11种核糖体蛋白。嗜热栖热菌L4的遗传实验和晶体结构表明,L4上存在可分离的区域,分别参与核糖体结合和表达控制,而RNA竞争实验以及异源L4的调节能力表明,这两种功能涉及的蛋白质序列存在重叠。我们在此报告,与其他外来细菌的L4蛋白不同,嗜热栖热菌的L4在大肠杆菌中对S10操纵子表达的控制作用较弱。此外,野生型嗜热栖热菌L4与大肠杆菌核糖体的结合比与大肠杆菌类似物的结合更弱。我们进行了合理的诱变,试图提高嗜热栖热菌L4的调节能力。同时还研究了突变蛋白在核糖体中的掺入情况。两种不同的缺失嗜热栖热菌特异性序列的突变对调节作用影响不大,尽管其中一种确实改善了核糖体结合。有趣的是,一组多个突变使嗜热栖热菌L4中α4和α5螺旋周围的区域更类似于大肠杆菌,这对该蛋白掺入大核糖体亚基没有影响,但显著提高了其调节潜力。因此,α4和α5螺旋周围的区域对大亚基的初始折叠步骤至关重要,也是自体控制的核心要素,推测是通过与S10 mRNA前导序列接触实现的。在组装的后期阶段,核糖体结合通过L4中不参与调节的区域与额外的rRNA接触而增强。同样,α4/α5区域之外的序列也有助于表达控制。

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