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维持双螺旋结构:真核生物DNA复制起点处的分子机器

Perpetuating the double helix: molecular machines at eukaryotic DNA replication origins.

作者信息

Méndez Juan, Stillman Bruce

机构信息

Cold Spring Harbor Laboratory, Cold Spring Harbor, New York 11724, USA.

出版信息

Bioessays. 2003 Dec;25(12):1158-67. doi: 10.1002/bies.10370.

Abstract

The hardest part of replicating a genome is the beginning. The first step of DNA replication (called "initiation") mobilizes a large number of specialized proteins ("initiators") that recognize specific sequences or structural motifs in the DNA, unwind the double helix, protect the exposed ssDNA, and recruit the enzymatic activities required for DNA synthesis, such as helicases, primases and polymerases. All of these components are orderly assembled before the first nucleotide can be incorporated. On the occasion of the 50th anniversary of the discovery of the DNA structure, we review our current knowledge of the molecular mechanisms that control initiation of DNA replication in eukaryotic cells, with particular emphasis on the recent identification of novel initiator proteins. We speculate how these initiators assemble molecular machines capable of performing specific biochemical tasks, such as loading a ring-shaped helicase onto the DNA double helix.

摘要

复制基因组最困难的部分在于起始阶段。DNA复制的第一步的第一步(称为“起始”)会动员大量专门的蛋白质(“起始因子”),这些蛋白质能够识别DNA中的特定序列或结构基序,解开双螺旋结构,保护暴露的单链DNA,并募集DNA合成所需的酶活性,如解旋酶、引发酶和聚合酶。在第一个核苷酸被掺入之前,所有这些成分都会有序组装。值此DNA结构发现50周年之际,我们回顾了目前对真核细胞中控制DNA复制起始的分子机制的认识,特别强调了最近对新型起始因子蛋白的鉴定。我们推测这些起始因子如何组装能够执行特定生化任务的分子机器,比如将环形解旋酶加载到DNA双螺旋上。

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