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豌豆的单个亚基 MCM6 形成同源六聚体并作为 DNA 解旋酶发挥作用。

A single subunit MCM6 from pea forms homohexamer and functions as DNA helicase.

机构信息

International Centre for Genetic Engineering and Biotechnology, Aruna Asaf Ali Marg, New Delhi, 110067, India.

出版信息

Plant Mol Biol. 2010 Nov;74(4-5):327-36. doi: 10.1007/s11103-010-9675-7. Epub 2010 Aug 22.

Abstract

The initiation of DNA replication starts from origins and is controlled by a multiprotein complex, which involves about twenty protein factors. One of the important factors is hetrohexameric minichromosome maintenance (MCM2-7) protein complex which is evolutionary conserved and functions as essential replicative helicase for DNA replication. Here we report the isolation and characterization of a single subunit of pea MCM protein complex, the MCM6. The deduced amino acid (827) sequence contains all the known canonical MCM motifs including zinc finger, MCM specific Walker A and Walker B and arginine finger. The purified recombinant protein contains ATP-dependent 3'-5' DNA helicase, ATP-binding and ATPase activities. The helicase activity was stimulated by replication fork like substrate and anti-MCM6 antibodies curtail all the enzyme activities of MCM6 protein. In vitro it self-interacts and forms a homohexamer which is active for DNA helicase and ATPase activities. The complete protein is required for self-interaction as the truncated MCM6 proteins were unable to self-interact. Western blot analysis and in vivo immunostaining followed by confocal microscopy showed the localization of MCM6 both in the nucleus and cytosol. These findings provide first direct evidence that single subunit MCM6 contains DNA helicase activity which is unique to plant MCM6 protein, as this activity was only reported for heteromultimers of MCM proteins in animal system. This discovery should make an important contribution to a better understanding of DNA replication in plants.

摘要

DNA 复制的起始始于原点,由一个包含约二十种蛋白质因子的多蛋白复合物控制。其中一个重要的因素是异源六聚体微小染色体维持(MCM2-7)蛋白复合物,它是进化保守的,作为 DNA 复制的必需复制解旋酶发挥作用。在这里,我们报告了豌豆 MCM 蛋白复合物的单个亚基(MCM6)的分离和鉴定。推导的氨基酸(827)序列包含所有已知的典型 MCM 基序,包括锌指、MCM 特异性 Walker A 和 Walker B 以及精氨酸指。纯化的重组蛋白含有 ATP 依赖性 3'-5' DNA 解旋酶、ATP 结合和 ATP 酶活性。解旋酶活性受到复制叉样底物的刺激,抗 MCM6 抗体抑制 MCM6 蛋白的所有酶活性。在体外,它自身相互作用并形成一个同源六聚体,具有 DNA 解旋酶和 ATP 酶活性。完整的蛋白质是自我相互作用所必需的,因为截短的 MCM6 蛋白无法自我相互作用。Western blot 分析和体内免疫染色后通过共聚焦显微镜显示 MCM6 定位于细胞核和细胞质中。这些发现首次直接证明单个亚基 MCM6 含有 DNA 解旋酶活性,这是植物 MCM6 蛋白所特有的,因为这种活性仅在动物系统的 MCM 蛋白异源多聚体中报道过。这一发现应该对更好地理解植物中的 DNA 复制做出重要贡献。

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