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解开DNA三链螺旋的第三条链,这是SV40大T抗原解旋酶的一种新活性。

Unwinding of the third strand of a DNA triple helix, a novel activity of the SV40 large T-antigen helicase.

作者信息

Kopel V, Pozner A, Baran N, Manor H

机构信息

Department of Biology, Technion-Israel Institute of Technology, Haifa, Israel.

出版信息

Nucleic Acids Res. 1996 Jan 15;24(2):330-5. doi: 10.1093/nar/24.2.330.

Abstract

We present experiments indicating that the SV40 large T-antigen (T-ag) helicase is capable of unwinding the third strand of DNA triple helices. Intermolecular d(TC)(20)d(GA)(20)d(TC)(20) triplexes were generated by annealing, at pH 5.5, a linearized double-stranded plasmid containing a d(TC)(27).d(GA)27 tract with a (32)P-labeled oligonucleotide consisting of a d(TC)(20) tract flanked by a sequence of 15 nt at the 3'-end. The triplexes remained stable at pH 7.2, as determined by agarose gel electrophoresis and dimethyl sulfate footprinting. Incubation with the T-ag helicase caused unwinding of the d(TC)(20) tract and consequent release of the oligonucleotide, while the plasmid molecules remained double-stranded. ATP was required for this reaction and could not be replaced by the non-hydrolyzable ATP analog AMP-PNP. T-ag did not unwind similar triplexes formed with oligonucleotides containing a d(TC)(20) tract and a 5' flanking sequence or no flanking sequence. These data indicate that unwinding of DNA triplexes by the T-ag helicase must be preceded by binding of the helicase to a single-stranded 3' flanking sequence, then the enzyme migrates in a 3'--> 5' direction, using energy provided by ATP hydrolysis, and causes release of the third strand. Unwinding of DNA triplexes by helicases may be required for processes such as DNA replication, transcription, recombination and repair.

摘要

我们展示的实验表明,SV40大T抗原(T-ag)解旋酶能够解开DNA三链螺旋的第三条链。通过在pH 5.5条件下退火,将含有d(TC)(27).d(GA)27片段的线性双链质粒与由d(TC)(20)片段和3'端15个核苷酸序列侧翼组成的(32)P标记寡核苷酸退火,生成分子间d(TC)(20)d(GA)(20)d(TC)(20)三链体。如琼脂糖凝胶电泳和硫酸二甲酯足迹法所测定,三链体在pH 7.2时保持稳定。用T-ag解旋酶孵育导致d(TC)(20)片段解旋,从而使寡核苷酸释放,而质粒分子保持双链状态。该反应需要ATP,且不能被不可水解的ATP类似物AMP-PNP替代。T-ag不会解开由含有d(TC)(20)片段和5'侧翼序列或无侧翼序列的寡核苷酸形成的类似三链体。这些数据表明,T-ag解旋酶解开DNA三链体之前,解旋酶必须先与单链3'侧翼序列结合,然后酶以3'→5'方向迁移,利用ATP水解提供的能量,导致第三条链释放。解旋酶解开DNA三链体可能是DNA复制、转录、重组和修复等过程所必需的。

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