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PRDM9的长锌指结构域与其DNA识别序列形成高度稳定且寿命长的复合物。

The long zinc finger domain of PRDM9 forms a highly stable and long-lived complex with its DNA recognition sequence.

作者信息

Striedner Yasmin, Schwarz Theresa, Welte Thomas, Futschik Andreas, Rant Ulrich, Tiemann-Boege Irene

机构信息

Institute of Biophysics, Johannes Kepler University Linz, Gruberstrasse 40, 4020, Linz, Austria.

Dynamic Biosensors GmbH, 82152, Planegg, Germany.

出版信息

Chromosome Res. 2017 Jun;25(2):155-172. doi: 10.1007/s10577-017-9552-1. Epub 2017 Feb 2.

Abstract

PR domain containing protein 9 (PRDM9) is a meiosis-specific, multi-domain protein that regulates the location of recombination hotspots by targeting its DNA recognition sequence for double-strand breaks (DSBs). PRDM9 specifically recognizes DNA via its tandem array of zinc fingers (ZnFs), epigenetically marks the local chromatin by its histone methyltransferase activity, and is an important tether that brings the DNA into contact with the recombination initiation machinery. A strong correlation between PRDM9-ZnF variants and specific DNA motifs at recombination hotspots has been reported; however, the binding specificity and kinetics of the ZnF domain are still obscure. Using two in vitro methods, gel mobility shift assays and switchSENSE, a quantitative biophysical approach that measures binding rates in real time, we determined that the PRDM9-ZnF domain forms a highly stable and long-lived complex with its recognition sequence, with a dissociation halftime of many hours. The ZnF domain exhibits an equilibrium dissociation constant (K ) in the nanomolar (nM) range, with polymorphisms in the recognition sequence directly affecting the binding affinity. We also determined that alternative sequences (15-16 nucleotides in length) can be specifically bound by different subsets of the ZnF domain, explaining the binding plasticity of PRDM9 for different sequences. Finally, longer binding targets are preferred than predicted from the numbers of ZnFs contacting the DNA. Functionally, a long-lived complex translates into an enzymatically active PRDM9 at specific DNA-binding sites throughout meiotic prophase I that might be relevant in stabilizing the components of the recombination machinery to a specific DNA target until DSBs are initiated by Spo11.

摘要

含PR结构域蛋白9(PRDM9)是一种减数分裂特异性的多结构域蛋白,它通过靶向双链断裂(DSB)的DNA识别序列来调节重组热点的位置。PRDM9通过其串联排列的锌指(ZnF)特异性识别DNA,通过其组蛋白甲基转移酶活性对局部染色质进行表观遗传标记,并且是使DNA与重组起始机制接触的重要纽带。已有报道称PRDM9-ZnF变体与重组热点处的特定DNA基序之间存在强相关性;然而,ZnF结构域的结合特异性和动力学仍不清楚。我们使用凝胶迁移率变动分析和switchSENSE这两种体外方法(一种实时测量结合速率的定量生物物理方法),确定PRDM9-ZnF结构域与其识别序列形成了高度稳定且寿命长的复合物,解离半衰期长达数小时。ZnF结构域的平衡解离常数(K)在纳摩尔(nM)范围内,识别序列中的多态性直接影响结合亲和力。我们还确定了长度为15 - 16个核苷酸的替代序列可被ZnF结构域的不同亚组特异性结合,这解释了PRDM9对不同序列的结合可塑性。最后,与根据接触DNA的锌指数量预测的情况相比,更长的结合靶点更受青睐。在功能上,一个寿命长的复合物在减数分裂前期I的特定DNA结合位点转化为具有酶活性的PRDM9,这可能与在Spo11引发DSB之前将重组机制的组件稳定在特定DNA靶点有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/18b7/5440498/f3f79401de04/10577_2017_9552_Fig1_HTML.jpg

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