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A junction branch point adjacent to a DNA backbone nick directs substrate cleavage by Saccharomyces cerevisiae Mus81-Mms4

机译:与DNA骨架缺口相邻的连接分支点指导酿酒酵母Mus81-Mms4对底物的切割

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摘要

The DNA structure-selective endonuclease Mus81-Mms4/Eme1 incises a number of nicked joint molecule substrates in vitro. 3′-flaps are an excellent in vitro substrate for Mus81-Mms4/Eme1. Mutants in MUS81 are synthetically lethal with mutations in the 5′-flap endonuclease FEN1/Rad27 in Saccharomyces cerevisiae and Schizosaccharomyces pombe. Considering the possibility for isoenergetic interconversion between 3′- and 5′- flaps, these data are consistent with the hypothesis that Mus81-Mms4/Eme1 acts on 3′-flaps in vivo. FEN1/Rad27 prefers dually flapped substrates and cleaves in a way that allows direct ligation of the resulting nick in the product duplex. Here we test the activity of Mus81-Mms4 on dually flapped substrates and find that in contrast to FEN1/Rad27, Mus81-Mms4 activity is impaired on such substrates, resulting in cleavage products that do not allow direct religation. We conclude that Mus81-Mms4, unlike FEN1/Rad27, does not prefer dually flapped substrates and is unlikely to function as a 3′-flapase counterpart to the 5′-flapase activity of FEN1/Rad27. We further find that joint molecule incision by Mus81-Mms4 occurs in a fashion determined by the branch point, regardless of the position of an upstream duplex end. These findings underscore the significance of a nick adjacent to a branch point for Mus81-Mms4 incision.
机译:DNA结构选择性核酸内切酶Mus81-Mms4 / Eme1在体外切开了许多有切口的关节分子底物。 3'瓣是Mus81-Mms4 / Eme1的出色体外底物。 MUS81中的突变在酿酒酵母和粟酒裂殖酵母中具有5'-襟翼内切核酸酶FEN1 / Rad27的突变,具有致命的合成危险。考虑到3'-和5'-皮瓣之间等能量互变的可能性,这些数据与Mus81-Mms4 / Eme1在体内作用于3'-皮瓣的假设相一致。 FEN1 / Rad27更喜欢双重拍打的底物并以允许直接连接产物双链体中形成的切口的方式切割。在这里,我们测试了在双拍打底物上的Mus81-Mms4的活性,发现与FEN1 / Rad27相比,Mus81-Mms4的活性在此类底物上受损,导致切割产物不允许直接连接。我们得出的结论是,与FEN1 / Rad27不同,Mus81-Mms4不喜欢双重拍打的底物,并且不太可能充当FEN1 / Rad27的5'-flapase活性的3'-flapase对应物。我们进一步发现,无论上游双链体末端的位置如何,Mus81-Mms4进行的联合分子切口均以分支点决定的方式发生。这些发现强调了在Mus81-Mms4切口的分支点附近形成切口的重要性。

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