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痘苗拓扑异构酶催化的DNA和RNA链转移反应的动力学分析

Kinetic analysis of DNA and RNA strand transfer reactions catalyzed by vaccinia topoisomerase.

作者信息

Sekiguchi J, Cheng C, Shuman S

机构信息

Molecular Biology Program, Sloan-Kettering Institute, New York, New York 10021, USA.

出版信息

J Biol Chem. 1997 Jun 20;272(25):15721-8. doi: 10.1074/jbc.272.25.15721.

Abstract

Vaccinia topoisomerase binds duplex DNA and forms a covalent DNA-(3'-phosphotyrosyl) protein adduct at the sequence 5'-CCCTT downward arrow. The enzyme reacts readily with a 36-mer CCCTT strand (DNA-p-RNA) composed of DNA 5' and RNA 3' of the scissile bond. However, a 36-mer composed of RNA 5' and DNA 3' of the scissile phosphate (RNA-p-DNA) is a poor substrate for covalent adduct formation. Vaccinia topoisomerase efficiently transfers covalently held CCCTT-containing DNA to 5'-OH-terminated RNA acceptors; the topoisomerase can therefore be used to tag the 5' end of RNA in vitro. Religation of the covalently bound CCCTT-containing DNA strand to a 5'-OH-terminated DNA acceptor is efficient and rapid (krel > 0.5 s-1), provided that the acceptor DNA is capable of base pairing to the noncleaved DNA strand of the topoisomerase-DNA donor complex. The rate of strand transfer to DNA is not detectably affected by base mismatches at the 5' nucleotide of the acceptor strand. Nucleotide deletions and insertions at the 5' end of the acceptor slow the rate of religation; the observed hierarchy of reaction rates is as follows: +1 insertion > -1 deletion > +2 insertion >> -2 deletion. These findings underscore the importance of a properly positioned 5'-OH terminus in transesterification reaction chemistry, but they also raise the possibility that topoisomerase may generate mutations by sealing DNA molecules with mispaired or unpaired ends.

摘要

痘苗病毒拓扑异构酶结合双链DNA,并在序列5'-CCCTT向下箭头处形成共价DNA-(3'-磷酸酪氨酸)蛋白加合物。该酶能与由易断裂键的DNA 5'和RNA 3'组成的36聚体CCCTT链(DNA-p-RNA)迅速反应。然而,由易断裂磷酸的RNA 5'和DNA 3'组成的36聚体(RNA-p-DNA)是共价加合物形成的不良底物。痘苗病毒拓扑异构酶能有效地将共价结合的含CCCTT的DNA转移到5'-OH末端的RNA受体上;因此,拓扑异构酶可用于在体外标记RNA的5'末端。只要受体DNA能够与拓扑异构酶-DNA供体复合物的未切割DNA链进行碱基配对,共价结合的含CCCTT的DNA链与5'-OH末端的DNA受体的重新连接高效且迅速(krel>0.5 s-1)。受体链5'核苷酸处的碱基错配不会显著影响链转移到DNA的速率。受体5'末端的核苷酸缺失和插入会减慢重新连接的速率;观察到的反应速率顺序如下:+1插入>-1缺失>+2插入>>-2缺失。这些发现强调了在酯交换反应化学中正确定位的5'-OH末端的重要性,但它们也提出了拓扑异构酶可能通过用错配或未配对末端封闭DNA分子而产生突变的可能性。

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