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来自两种不同酵母菌株的26S rRNA结合核糖体蛋白L25与来自三种真细菌和两种叶绿体的等效蛋白的结构比较。

Structural comparison of 26S rRNA-binding ribosomal protein L25 from two different yeast strains and the equivalent proteins from three eubacteria and two chloroplasts.

作者信息

Raué H A, Otaka E, Suzuki K

机构信息

Biochemisch Laboratorium, Vrije Universiteit, Amsterdam, The Netherlands.

出版信息

J Mol Evol. 1989 May;28(5):418-26. doi: 10.1007/BF02603077.

Abstract

The sequences of Saccharomyces carlsbergensis ribosomal protein (r-protein) SL25* and its equivalents from Candida utilis (CL25), Escherichia coli (EL23), Bacillus stearothermophilus (BL23), Mycoplasma capricolum (ML23), Marchantia polymorpha chloroplasts (McpL23), and Nicotiana tabacum chloroplasts (NcpL23) were examined using a computer program that evaluates the extent of sequence similarity by calculating correlation coefficients for each pair of residues in two proteins from a number of physical properties of individual amino acids. Comparison matrices demonstrate that the prokaryotic sequences (including McpL23 and NcpL23) can be aligned unambiguously by introducing small internal deletions/insertions at three specific positions. A similar comparison brought to light a clear evolutionary relationship between the prokaryotic and the yeast proteins despite the fact that visual inspection of these sequences revealed only limited similarity. The alignment deduced from this comparison shows the two yeast r-proteins to have acquired a long (50-60 amino acids) N-terminal extension as well as a 13-amino acid-long deletion near the C-terminus. The significance of these findings in terms of the evolution of r-proteins in general and the biological function of various parts of the SL25 protein in particular is discussed.

摘要

使用一个计算机程序对卡尔酵母核糖体蛋白(r蛋白)SL25*及其在产朊假丝酵母(CL25)、大肠杆菌(EL23)、嗜热脂肪芽孢杆菌(BL23)、山羊支原体(ML23)、地钱叶绿体(McpL23)和烟草叶绿体(NcpL23)中的对应序列进行了检测。该程序通过根据单个氨基酸的多种物理性质计算两种蛋白质中每对残基的相关系数来评估序列相似程度。比较矩阵表明,通过在三个特定位置引入小的内部缺失/插入,可以明确地比对原核生物序列(包括McpL23和NcpL23)。类似的比较揭示了原核生物和酵母蛋白之间明显的进化关系,尽管直观检查这些序列时仅发现有限的相似性。从该比较得出的比对结果显示,两种酵母r蛋白获得了一个长的(50 - 60个氨基酸)N端延伸以及在C端附近一个13个氨基酸长的缺失。讨论了这些发现对于一般r蛋白进化特别是SL25蛋白各部分生物学功能的意义。

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