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来自小牛胸腺的DNA解旋酶E的DNA底物特异性

DNA substrate specificity of DNA helicase E from calf thymus.

作者信息

Turchi J J, Murante R S, Bambara R A

机构信息

Department of Biochemistry, University of Rochester School of Medicine and Dentistry, NY 14642.

出版信息

Nucleic Acids Res. 1992 Nov 25;20(22):6075-80. doi: 10.1093/nar/20.22.6075.

Abstract

DNA helicase E from calf thymus has been characterized with respect to DNA substrate specificity. The helicase was capable of displacing DNA fragments up to 140 nucleotides in length, but was unable to displace a DNA fragment 322 nucleotides in length. DNA competition experiments revealed that helicase E was moderately processive for translocation on single strand M13mp18 DNA, and that the helicase would dissociate and rebind during a 15 minute reaction. Comparison of the rate of ATPase activity catalyzed by helicase E on single strand DNA substrates of different lengths, suggested a processivity consistent with the competition experiments. The helicase displayed a preference for displacing primers whose 5' terminus was fully annealed as opposed to primers with a 12 nucleotide 5' unannealed tail. The presence of a 12 nucleotide 3' tail had no effect on the rate of displacement. DNA helicase E was capable of displacing a primer downstream of either a four nucleotide gap, a one nucleotide gap or a nick in the DNA substrate. Helicase E was inactive on a fully duplex DNA 30 base pairs in length. Calf thymus RP-A stimulated the DNA displacement activity of helicase E. These properties are consistent with a role for DNA helicase E in chromosomal DNA repair.

摘要

已对来自小牛胸腺的DNA解旋酶E的DNA底物特异性进行了表征。该解旋酶能够置换长度达140个核苷酸的DNA片段,但无法置换长度为322个核苷酸的DNA片段。DNA竞争实验表明,解旋酶E在单链M13mp18 DNA上进行易位时具有适度的持续性,并且该解旋酶在15分钟的反应过程中会解离并重新结合。比较解旋酶E在不同长度的单链DNA底物上催化的ATP酶活性速率,结果表明其持续性与竞争实验一致。该解旋酶表现出优先置换5'末端完全退火的引物,而不是具有12个核苷酸5'未退火尾巴的引物。12个核苷酸3'尾巴的存在对置换速率没有影响。DNA解旋酶E能够在DNA底物中四核苷酸缺口、一核苷酸缺口或切口下游置换引物。解旋酶E对长度为30个碱基对的完全双链DNA无活性。小牛胸腺RP - A刺激了解旋酶E的DNA置换活性。这些特性与DNA解旋酶E在染色体DNA修复中的作用一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/21f5/334475/05de133dae62/nar00233-0193-a.jpg

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