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核糖核酸酶E的C端结构域负责组装大肠杆菌降解体,它在体内参与信使核糖核酸的降解,但不参与核糖体核糖核酸的加工。

The C-terminal half of RNase E, which organizes the Escherichia coli degradosome, participates in mRNA degradation but not rRNA processing in vivo.

作者信息

Lopez P J, Marchand I, Joyce S A, Dreyfus M

机构信息

Laboratoire de Génétique Moléculaire, CNRS UMR 8541, Ecole Normale Supérieure, 46 rue d'Ulm, 75230 Paris, France.

出版信息

Mol Microbiol. 1999 Jul;33(1):188-99. doi: 10.1046/j.1365-2958.1999.01465.x.

DOI:10.1046/j.1365-2958.1999.01465.x
PMID:10411735
Abstract

RNase E is an essential Escherichia coli endonuclease, which controls both 5S rRNA maturation and bulk mRNA decay. While the C-terminal half of this 1061-residue protein associates with polynucleotide phosphorylase (PNPase) and several other enzymes into a 'degradosome', only the N-terminal half, which carries the catalytic activity, is required for growth. We characterize here a mutation (rne131 ) that yields a metabolically stable polypeptide lacking the last 477 residues of RNAse E. This mutation resembles the N-terminal conditional mutation rne1 in stabilizing mRNAs, both in bulk and individually, but differs from it in leaving rRNA processing and cell growth unaffected. Another mutation (rne105 ) removing the last 469 residues behaves similarly. Thus, the C-terminal half of RNase E is instrumental in degrading mRNAs, but dispensable for processing rRNA. A plausible interpretation is that the former activity requires that RNase E associates with other degradosome proteins; however, PNPase is not essential, as RNase E remains fully active towards mRNAs in rne+pnp mutants. All mRNAs are not stabilized equally by the rne131 mutation: the greater their susceptibility to RNase E, the larger the stabilization. Artificial mRNAs generated by E. coli expression systems based on T7 RNA polymerase can be genuinely unstable, and we show that the mutation can improve the yield of such systems without compromising cell growth.

摘要

核糖核酸酶E是一种必需的大肠杆菌内切核酸酶,它控制5S核糖体RNA的成熟和大量信使核糖核酸的降解。虽然这个由1061个氨基酸组成的蛋白质的C端一半与多核苷酸磷酸化酶(PNPase)和其他几种酶结合形成一个“降解体”,但只有具有催化活性的N端一半是生长所必需的。我们在此描述了一个突变(rne131),它产生了一种代谢稳定的多肽,缺少核糖核酸酶E的最后477个氨基酸。这个突变在稳定信使核糖核酸方面类似于N端条件突变rne1,无论是总体上还是个别情况下,但与之不同的是,它不会影响核糖体RNA的加工和细胞生长。另一个去除最后469个氨基酸的突变(rne105)表现类似。因此,核糖核酸酶E的C端一半有助于信使核糖核酸的降解,但对核糖体RNA的加工不是必需的。一个合理的解释是,前一种活性要求核糖核酸酶E与其他降解体蛋白结合;然而,PNPase不是必需的,因为在rne + pnp突变体中,核糖核酸酶E对信使核糖核酸仍然完全有活性。rne131突变并不会同等程度地稳定所有信使核糖核酸:它们对核糖核酸酶E的敏感性越高,稳定程度就越大。基于T7 RNA聚合酶的大肠杆菌表达系统产生的人工信使核糖核酸可能真的不稳定,我们表明这种突变可以提高此类系统的产量而不影响细胞生长。

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