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质粒RSF1010编码的迁移蛋白对双链和单链DNA的体外切割

In vitro cleavage of double- and single-stranded DNA by plasmid RSF1010-encoded mobilization proteins.

作者信息

Scherzinger E, Lurz R, Otto S, Dobrinski B

机构信息

Max-Planck-Institut für Molekulare Genetik, Abteilung Schuster, Berlin, FRG.

出版信息

Nucleic Acids Res. 1992 Jan 11;20(1):41-8. doi: 10.1093/nar/20.1.41.

Abstract

We have used purified RSF1010 mobilization proteins to reproduce in vitro a strand-specific nicking at the plasmid origin of transfer, oriT. In the presence of Mg2+, the proteins MobA (78-kDa form of RSF1010 DNA primase), MobB, and MobC and supercoiled or linear duplex oriT DNA form large amounts of a cleavage complex, which is characterized by its sensitivity to protein-denaturant treatment. Upon addition of SDS to such a complex, a single strand break is generated in the DNA, and MobA is found linked to the 5' nick terminus, presumably covalently. The double-strand nicking activity of MobA requires, in addition to Mg2+, the presence of MobC and is stimulated by the presence of MobB. The nick site has been shown by DNA sequencing to lie at the position cleaved in vivo during transfer, between nucleotides 3138/3139 in the r strand of RSF1010. We have found that MobA will also cleave DNA at sites other than oriT if the DNA is present in single-stranded form. Breakage in this case occurs in the absence of denaturing conditions, and after prolonged incubation, reclosure can be demonstrated.

摘要

我们已经使用纯化的RSF1010转移蛋白在体外重现了质粒转移起始点oriT处的链特异性切口。在Mg2+存在的情况下,MobA(RSF1010 DNA引发酶的78 kDa形式)、MobB和MobC蛋白与超螺旋或线性双链oriT DNA形成大量的切割复合物,其特征是对蛋白质变性剂处理敏感。向这样的复合物中加入SDS后,DNA中会产生一个单链断裂,并且发现MobA与5'切口末端相连,推测是共价连接。MobA的双链切口活性除了需要Mg2+外,还需要MobC的存在,并且受到MobB存在的刺激。通过DNA测序表明,切口位点位于RSF1010的r链中体内转移过程中被切割的位置,在核苷酸3138/3139之间。我们发现,如果DNA以单链形式存在,MobA也会在oriT以外的位点切割DNA。在这种情况下,断裂在没有变性条件下发生,并且经过长时间孵育后,可以证明重新闭合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b7b1/310323/afb9f535df9d/nar00075-0062-a.jpg

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