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一种核糖体RNA加工核酸酶的核糖核蛋白底物。

The ribonucleoprotein substrate for a ribosomal RNA-processing nuclease.

作者信息

Stahl D A, Pace B, Marsh T, Pace N R

出版信息

J Biol Chem. 1984 Sep 25;259(18):11448-53.

PMID:6432797
Abstract

The Bacillus subtilis RNase M5 activity, responsible for the endonucleolytic maturation of 5 S rRNA, requires two proteins, alpha and beta. The beta component has been purified to homogeneity and shown to correspond to ribosomal protein BL16. The BL16 protein evidently corresponds functionally to Escherichia coli ribosomal protein EL18, as that latter protein also will complement the B. subtilis alpha protein in the RNase M5 reaction. A filter binding assay for the formation of B. subtilis 5 S rRNA-protein complexes was characterized and used to evaluate the association of BL16 protein with some RNAs. A native precursor of 5 S rRNA, containing extra sequences at both termini of the mature domain, binds the ribosomal protein no better than the mature 5 S rRNA; the precursor sequences do not facilitate that interaction. A model is considered in which the precursor segments facilitate, by refolding, the dissociation of processing products prior to the RNase M5 step. Electrostatic versus nonelectrostatic contributions to the BL16-5 S rRNA complex formation were inspected by analyzing variation in apparent association constants as a function of ionic strength. Electrostatic interactions were seen to contribute approximately 65% to the overall binding energy.

摘要

枯草芽孢杆菌核糖核酸酶M5的活性负责5S核糖体核糖核酸(rRNA)的核酸内切酶成熟过程,该活性需要两种蛋白质,α和β。β组分已被纯化至同质,并显示对应于核糖体蛋白BL16。显然,BL16蛋白在功能上对应于大肠杆菌核糖体蛋白EL18,因为后一种蛋白在核糖核酸酶M5反应中也能与枯草芽孢杆菌的α蛋白互补。对枯草芽孢杆菌5S rRNA - 蛋白质复合物形成的滤膜结合试验进行了表征,并用于评估BL16蛋白与某些RNA的结合。5S rRNA的天然前体在成熟结构域的两端都含有额外序列,其与核糖体蛋白的结合能力并不比成熟的5S rRNA更好;前体序列并不能促进这种相互作用。本文考虑了一个模型,其中前体片段通过重折叠促进了核糖核酸酶M5步骤之前加工产物的解离。通过分析表观结合常数随离子强度的变化,研究了静电和非静电对BL16 - 5S rRNA复合物形成的贡献。发现静电相互作用对总结合能的贡献约为65%。

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