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真核核糖核酸酶HI和HII在DNA-RNA杂交体上产生特征性水解模式:进一步证明线粒体核糖核酸酶H是核糖核酸酶HII。

Eukaryotic ribonucleases HI and HII generate characteristic hydrolytic patterns on DNA-RNA hybrids: further evidence that mitochondrial RNase H is an RNase HII.

作者信息

Pileur F, Toulme J J, Cazenave C

机构信息

INSERM U386, IFR Pathologies Infectieuses, Université Victor Segalen-Bordeaux II, 143 rue Léo Saignat, 33076 Bordeaux cédex, France.

出版信息

Nucleic Acids Res. 2000 Sep 15;28(18):3674-83. doi: 10.1093/nar/28.18.3674.

Abstract

RNase H activities from HeLa cells (either of cytoplasmic or mitochondrial origin), and from mitochondria of beef heart and Xenopus ovaries, have been tested with RNA-DNA substrates of defined length (20 bp) and sequence. Substrates were either blunt-ended, or presented DNA or RNA overhangs. The hydrolysis profiles obtained at early times of the digestion showed a good correlation between the class of RNase H, either type I or II assigned according to biochemical parameters, whatever the organism. Consequently, the pattern of primary cuts can be considered as a signature of the predominant RNase H activity. For a given sequence, hydrolysis profiles obtained are similar, if not identical, for either blunt-ended substrates or those presenting overhangs. However, profiles showed variations depending on the sequence used. Of the three sequences tested, one appears very discriminatory, class I RNases H generating a unique primary cut 3 nt from the 3' end of the RNA strand, whereas class II RNases H generated two simultaneous primary cuts at 6 and at 8 nt from the 5' end of the RNA strand. Hydrolysis profiles further confirm the assignation of the mitochondrial RNase H activity from HeLa cells, beef heart and Xenopus oocytes to the class II.

摘要

已使用特定长度(20个碱基对)和序列的RNA-DNA底物,对来自HeLa细胞(细胞质或线粒体来源)、牛心脏线粒体和非洲爪蟾卵巢线粒体的核糖核酸酶H(RNase H)活性进行了测试。底物要么是平端的,要么有DNA或RNA突出端。在消化早期获得的水解图谱显示,无论生物体如何,根据生化参数归类为I型或II型的RNase H类别之间都有良好的相关性。因此,初次切割模式可被视为主要RNase H活性的特征。对于给定序列,无论底物是平端的还是有突出端的,所获得的水解图谱相似(若不相同)。然而,图谱因所用序列而异。在所测试的三个序列中,有一个序列具有很强的区分性,I类RNase H在RNA链3'端下游3个核苷酸处产生唯一的初次切割,而II类RNase H在RNA链5'端下游6个和8个核苷酸处同时产生两个初次切割。水解图谱进一步证实了HeLa细胞、牛心脏和非洲爪蟾卵母细胞中线粒体RNase H活性属于II类。

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