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来自细菌的核糖核酸酶P。蛋白质亚基的底物识别与功能。

RNase P from bacteria. Substrate recognition and function of the protein subunit.

作者信息

Kirsebom L A, Vioque A

机构信息

Department of Microbiology, Biomedical Center, Uppsala, Sweden.

出版信息

Mol Biol Rep. 1995;22(2-3):99-109. doi: 10.1007/BF00988713.

Abstract

RNase P recognizes many different precursor tRNAs as well as other substrates and cleaves all of them accurately at the expected position. RNase P recognizes the tRNA structure of the precursor tRNA by a set of interactions between the catalytic RNA subunit and the T- and acceptor-stems mainly, although residues in the 5'-leader sequence as well as the 3'-terminal CCA are important. These conclusions have been reached by several studies on mutant precursor tRNAs as well as cross-linking studies between RNase P RNA and precursor tRNAs. The protein subunit of RNase P seems also to affect the way that the substrate is recognized as well as the range of substrates that can be used by RNase P, although the protein does not seem to interact directly with the substrates. The interaction between the protein and RNA subunits of RNase P has been extensively studied in vitro. The protein subunit sequence is not highly conserved among bacteria, however different proteins are functionally equivalent as heterologous reconstitution of the RNase P holoenzyme can be achieved in many cases.

摘要

核糖核酸酶P能识别多种不同的前体tRNA以及其他底物,并在预期位置准确切割所有这些底物。核糖核酸酶P主要通过催化RNA亚基与T茎和受体茎之间的一系列相互作用来识别前体tRNA的tRNA结构,尽管5'前导序列以及3'末端CCA中的残基也很重要。这些结论是通过对突变前体tRNA的多项研究以及核糖核酸酶P RNA与前体tRNA之间的交联研究得出的。核糖核酸酶P的蛋白质亚基似乎也会影响底物的识别方式以及核糖核酸酶P可使用的底物范围,尽管该蛋白质似乎并不直接与底物相互作用。核糖核酸酶P的蛋白质和RNA亚基之间在体外已得到广泛研究。该蛋白质亚基序列在细菌中并非高度保守,然而不同的蛋白质在功能上是等效的,因为在许多情况下可以实现核糖核酸酶P全酶的异源重组。

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