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PMS2和MLH1在调节发散重复介导的缺失中起重要作用。

Functions of PMS2 and MLH1 important for regulation of divergent repeat-mediated deletions.

作者信息

Trost Hannah, Lopezcolorado Felicia Wednesday, Merkell Arianna, Stark Jeremy M

机构信息

Department of Cancer Genetics and Epigenetics, Beckman Research Institute of the City of Hope, Duarte, California 91010, USA.

Irell and Manella Graduate School of Biological Sciences, Beckman Research Institute of the City of Hope, Duarte, California 91010, USA.

出版信息

bioRxiv. 2024 Aug 6:2024.08.05.606388. doi: 10.1101/2024.08.05.606388.

Abstract

Repeat-mediated deletions (RMDs) are a type of deletion rearrangement that utilizes two repetitive elements to bridge a DNA double-strand break (DSB) that leads to loss of the intervening sequence and one of the repeats. Sequence divergence between repeats causes RMD suppression and indeed this divergence must be resolved in the RMD products. The mismatch repair factor, MLH1, was shown to be critical for both RMD suppression and a polarity of sequence divergence resolution in RMDs. Here, we sought to study the interrelationship between these two aspects of RMD regulation (i.e., RMD suppression and polar divergence resolution), by examining several mutants of MLH1 and its binding partner PMS2. To begin with, we show that PMS2 is also critical for both RMD suppression and polar resolution of sequence divergence in RMD products. Then, with six mutants of the MLH1-PMS2 heterodimer, we found several different patterns: three mutants showed defects in both functions, one mutant showed loss of RMD suppression but not polar divergence resolution, whereas another mutant showed the opposite, and finally one mutant showed loss of RMD suppression but had a complex effect on polar divergence resolution. These findings indicate that RMD suppression vs. polar resolution of sequence divergence are distinct functions of MLH1-PMS2.

摘要

重复介导的缺失(RMDs)是一种缺失重排类型,它利用两个重复元件连接DNA双链断裂(DSB),导致中间序列和其中一个重复序列丢失。重复序列之间的序列差异会导致RMD抑制,实际上这种差异必须在RMD产物中得到解决。错配修复因子MLH1被证明对RMD抑制和RMD中序列差异解决的极性都至关重要。在这里,我们试图通过研究MLH1及其结合伴侣PMS2的几个突变体来探讨RMD调控这两个方面(即RMD抑制和极性差异解决)之间的相互关系。首先,我们表明PMS2对RMD抑制和RMD产物中序列差异的极性解决也至关重要。然后,通过MLH1-PMS2异二聚体的六个突变体,我们发现了几种不同的模式:三个突变体在两种功能上都有缺陷,一个突变体表现出RMD抑制缺失但极性差异解决正常,而另一个突变体则相反,最后一个突变体表现出RMD抑制缺失但对极性差异解决有复杂影响。这些发现表明,RMD抑制与序列差异的极性解决是MLH1-PMS2的不同功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4be9/11326157/00c573db5fba/nihpp-2024.08.05.606388v1-f0001.jpg

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