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首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >GENE 4 HELICASE OF BACTERIOPHAGE T7 MEDIATES STRAND TRANSFER THROUGH PYRIMIDINE DIMERS, MISMATCHES, AND NONHOMOLOGOUS REGIONS
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GENE 4 HELICASE OF BACTERIOPHAGE T7 MEDIATES STRAND TRANSFER THROUGH PYRIMIDINE DIMERS, MISMATCHES, AND NONHOMOLOGOUS REGIONS

机译:细菌噬菌体T7的基因4解旋酶介导通过嘧啶,小瘤和非同属区的链转移。

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摘要

In bacteriophage T7 the gene 2.5 single-stranded DNA-binding protein and the gene 4 helicase together promote the annealing of homologous regions of two DNA partners to form a joint molecule and subsequent strand transfer, In this reaction T7 gene 2.5 protein is essential for joint molecule formation, but is not required for T7 gene 4 protein-mediated strand transfer, T7 gene 4 helicase alone is able to mediate strand transfer, provided that a joint molecule is available, The present paper shows that, in addition, strand transfer proceeds at a normal rate even when both DNA partners contain ultraviolet-induced pyrimidine dimers (0.6 dimer per 100 nt), An insert of a relatively long (842-nt) segment of nonhomologous DNA in the single-stranded DNA partner has no effect on strand transfer, whereas its presence in the double-stranded partner prevents strand transfer, A short insert (37 nt) can be tolerated in either partner, Thus, DNA helicase is able to participate in recombinational DNA repair through its role in strand exchange, providing a pathway distinct from nucleotide excision repair. [References: 40]
机译:在噬菌体T7中,基因2.5单链DNA结合蛋白和基因4解旋酶共同促进了两个DNA伴侣的同源区域的退火,从而形成一个联合分子并随后进行链转移,在此反应中,T7基因2.5蛋白对于联合至关重要分子形成,但不是T7基因4蛋白质介导的链转移所必需的,只要有可用的联合分子,单独的T7基因4解旋酶就能够介导链转移。即使两个DNA配体都包含紫外线诱导的嘧啶二聚体(每100 nt 0.6个二聚体),也能保持正常的速率。在单链DNA配体中插入较长(842 nt)非同源DNA片段对链转移没有影响,但它在双链伴侣中的存在会阻止链转移,但任何一个伴侣都可以容忍一个短插入片段(37 nt),因此,DNA解旋酶能够参与重组DNA通过其在链交换中的作用进行修复,提供不同于核苷酸切除修复的途径。 [参考:40]

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