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DNA strand displacement, strand annealing and strand swapping by the Drosophila Bloom's syndrome helicase

机译:果蝇布鲁姆氏综合征解旋酶的DNA链置换,链退火和链交换

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摘要

Genetic analysis of the Drosophila Bloom's syndrome helicase homolog (mus309/DmBLM) indicates that DmBLM is required for the synthesis-dependent strand annealing (SDSA) pathway of homologous recombination. Here we report the first biochemical study of DmBLM. Recombinant, epitope-tagged DmBLM was expressed in Drosophila cell culture and highly purified protein was prepared from nuclear extracts. Purified DmBLM exists exclusively as a high molecular weight (similar to 1.17 MDa) species, is a DNA-dependent ATPase, has 3'-> 5' DNA helicase activity, prefers forked substrate DNAs and anneals complementary DNAs. High-affinity DNA binding is ATP-dependent and low-affinity ATP-independent interactions contribute to forked substrate DNA binding and drive strand annealing. DmBLM combines DNA strand displacement with DNA strand annealing to catalyze the displacement of one DNA strand while annealing a second complementary DNA strand.
机译:果蝇布鲁姆综合症解旋酶同源物(mus309 / DmBLM)的遗传分析表明,DmBLM是同源重组的依赖于合成的链退火(SDSA)途径所必需的。在这里,我们报告DmBLM的第一个生化研究。在果蝇细胞培养物中表达带有表位标签的重组DmBLM,并从核提取物中制备高度纯化的蛋白质。纯化的DmBLM仅以高分子量(类似于1.17 MDa)形式存在,是一种DNA依赖性ATPase,具有3'-> 5'DNA解旋酶活性,更喜欢分叉的底物DNA并退火互补的DNA。高亲和力DNA结合是ATP依赖的,而低亲和力ATP独立的相互作用则有助于叉状底物DNA的结合并驱动链退火。 DmBLM将DNA链置换与DNA链退火结合在一起,以催化一条DNA链的置换,同时退火另一条互补DNA链。

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