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裂殖酵母Mus81-Eme1和芽殖酵母Mus81-Mms4对模型复制叉的切割。

Cleavage of model replication forks by fission yeast Mus81-Eme1 and budding yeast Mus81-Mms4.

作者信息

Whitby Matthew C, Osman Fekret, Dixon Julie

机构信息

Department of Biochemistry, University of Oxford, South Parks Road, Oxford OX1 3QU, United Kingdom.

出版信息

J Biol Chem. 2003 Feb 28;278(9):6928-35. doi: 10.1074/jbc.M210006200. Epub 2002 Dec 8.

Abstract

The blockage of replication forks can result in the disassembly of the replicative apparatus and reversal of the fork to form a DNA junction that must be processed in order for replication to restart and sister chromatids to segregate at mitosis. Fission yeast Mus81-Eme1 and budding yeast Mus81-Mms4 are endonucleases that have been implicated in the processing of aberrant DNA junctions formed at stalled replication forks. Here we have investigated the activity of purified Mus81-Eme1 and Mus81-Mms4 on substrates that resemble DNA junctions that are expected to form when a replication fork reverses. Both enzymes cleave Holliday junctions and substrates that resemble normal replication forks poorly or not at all. However, forks where the equivalents of either both the leading and lagging strands or just the lagging strand are juxtaposed at the junction point, or where either the leading or lagging strand has been unwound to produce a fork with a single-stranded tail, are cleaved well. Cleavage sites map predominantly between 3 and 6 bp 5' of the junction point. For most substrates the leading strand template is cleaved. The sole exception is a fork with a 5' single-stranded tail, which is cleaved in the lagging strand template.

摘要

复制叉的阻滞可导致复制装置的解体以及复制叉的逆转,从而形成一个DNA连接点。为了使复制重新启动以及姐妹染色单体在有丝分裂时分离,这个连接点必须得到处理。裂殖酵母中的Mus81-Eme1和芽殖酵母中的Mus81-Mms4是核酸内切酶,它们与在停滞的复制叉处形成的异常DNA连接点的处理有关。在这里,我们研究了纯化的Mus81-Eme1和Mus81-Mms4对类似于复制叉逆转时预期形成的DNA连接点的底物的活性。这两种酶对霍利迪连接体和类似于正常复制叉的底物切割能力很差或根本无法切割。然而,在连接点处前导链和后随链两者的等同物或者仅后随链并列的复制叉,或者前导链或后随链其中之一已解旋以产生带有单链尾巴的复制叉,都能被很好地切割。切割位点主要定位在连接点5'端的3至6个碱基对之间。对于大多数底物,切割的是前导链模板。唯一的例外是带有5'单链尾巴的复制叉,其切割发生在后随链模板中。

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