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MCM2-7与MCM467单链DNA结合活性的差异:MCM2和MCM5定义了一个缓慢的ATP依赖性步骤。

Differences in the single-stranded DNA binding activities of MCM2-7 and MCM467: MCM2 and MCM5 define a slow ATP-dependent step.

作者信息

Bochman Matthew L, Schwacha Anthony

机构信息

Department of Biological Sciences, University of Pittsburgh, Pittsburgh, Pennsylvania 15260.

Department of Biological Sciences, University of Pittsburgh, Pittsburgh, Pennsylvania 15260.

出版信息

J Biol Chem. 2007 Nov 16;282(46):33795-33804. doi: 10.1074/jbc.M703824200. Epub 2007 Sep 25.

Abstract

The MCM2-7 complex, a hexamer containing six distinct and essential subunits, is postulated to be the eukaryotic replicative DNA helicase. Although all six subunits function at the replication fork, only a specific subcomplex consisting of the MCM4, 6, and 7 subunits (MCM467) and not the MCM2-7 complex exhibits DNA helicase activity in vitro. To understand why MCM2-7 lacks helicase activity and to address the possible function of the MCM2, 3, and 5 subunits, we have compared the biochemical properties of the Saccharomyces cerevisiae MCM2-7 and MCM467 complexes. We demonstrate that both complexes are toroidal and possess a similar ATP-dependent single-stranded DNA (ssDNA) binding activity, indicating that the lack of helicase activity by MCM2-7 is not due to ineffective ssDNA binding. We identify two important differences between them. MCM467 binds dsDNA better than MCM2-7. In addition, we find that the rate of MCM2-7/ssDNA association is slow compared with MCM467; the association rate can be dramatically increased either by preincubation with ATP or by inclusion of mutations that ablate the MCM2/5 active site. We propose that the DNA binding differences between MCM2-7 and MCM467 correspond to a conformational change at the MCM2/5 active site with putative regulatory significance.

摘要

MCM2 - 7复合物是一种包含六个不同且必需亚基的六聚体,被认为是真核生物复制性DNA解旋酶。尽管所有六个亚基都在复制叉处发挥作用,但只有由MCM4、6和7亚基组成的特定亚复合物(MCM467)而非MCM2 - 7复合物在体外表现出DNA解旋酶活性。为了理解为何MCM2 - 7缺乏解旋酶活性以及探讨MCM2、3和5亚基可能的功能,我们比较了酿酒酵母MCM2 - 7和MCM467复合物的生化特性。我们证明这两种复合物都是环形的,并且具有相似的ATP依赖性单链DNA(ssDNA)结合活性,这表明MCM2 - 7缺乏解旋酶活性并非由于ssDNA结合无效。我们确定了它们之间的两个重要差异。MCM467比MCM2 - 7能更好地结合双链DNA(dsDNA)。此外,我们发现与MCM467相比,MCM2 - 7与ssDNA的结合速率较慢;通过与ATP预孵育或引入消除MCM2/5活性位点的突变,结合速率可显著提高。我们提出MCM2 - 7和MCM467之间的DNA结合差异对应于MCM2/5活性位点的构象变化,具有假定的调节意义。

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