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肿瘤抑制因子PALB2的链交换结构域本质上是无序的,并促进依赖寡聚化的DNA压缩。

The strand exchange domain of tumor suppressor PALB2 is intrinsically disordered and promotes oligomerization-dependent DNA compaction.

作者信息

Kyriukha Yevhenii, Watkins Maxwell B, Redington Jennifer M, Chintalapati Nithya, Ganti Abhishek, Dastvan Reza, Uversky Vladimir N, Hopkins Jesse B, Pozzi Nicola, Korolev Sergey

机构信息

Edward A. Doisy Department of Biochemistry and Molecular Biology, Saint Louis University School of Medicine, St Louis, MO, USA.

The Biophysics Collaborative Access Team (BioCat), Departments of Biology and Physics, Illinois Institute of Technology, Chicago, IL, USA.

出版信息

iScience. 2024 Oct 28;27(12):111259. doi: 10.1016/j.isci.2024.111259. eCollection 2024 Dec 20.

Abstract

The partner and localizer of BRCA2 (PALB2) is a scaffold protein linking BRCA1 with BRCA2 and RAD51 during homologous recombination (HR). PALB2 interaction with DNA strongly enhances HR in cells, while the PALB2 DNA-binding domain (PALB2-DBD) supports DNA strand exchange . We determined that PALB2-DBD is intrinsically disordered beyond a single N-terminal α-helix. Coiled-coil mediated dimerization is stabilized by interaction between intrinsically disordered regions (IDRs) leading to a 2-fold structural compaction. Single-stranded (ss)DNA binding promotes additional structural compaction and protein tetramerization. Using confocal single-molecule FRET, we observed bimodal and oligomerization-dependent compaction of ssDNA bound to PALB2-DBD, suggesting a novel strand exchange mechanism. Bioinformatics analysis and preliminary observations indicate that PALB2 forms protein-nucleic acids condensates. Intrinsically disordered DBDs are prevalent in the human proteome. PALB2-DBD and similar IDRs may use a chaperone-like mechanism to aid formation and resolution of DNA and RNA multichain intermediates during DNA replication, repair and recombination.

摘要

BRCA2的伴侣和定位蛋白(PALB2)是一种支架蛋白,在同源重组(HR)过程中连接BRCA1与BRCA2以及RAD51。PALB2与DNA的相互作用能显著增强细胞中的HR,而PALB2 DNA结合结构域(PALB2-DBD)支持DNA链交换。我们确定,除了单个N端α螺旋外,PALB2-DBD本质上是无序的。卷曲螺旋介导的二聚化通过内在无序区域(IDR)之间的相互作用得以稳定,从而导致2倍的结构压缩。单链(ss)DNA结合促进了额外的结构压缩和蛋白质四聚化。利用共聚焦单分子荧光共振能量转移,我们观察到与PALB2-DBD结合的ssDNA呈现双峰和寡聚化依赖性压缩,这表明存在一种新的链交换机制。生物信息学分析和初步观察表明,PALB2形成蛋白质 - 核酸凝聚物。本质上无序的DBD在人类蛋白质组中很普遍。PALB2-DBD和类似的IDR可能利用一种类似分子伴侣的机制,在DNA复制、修复和重组过程中协助DNA和RNA多链中间体的形成和分解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e44c/11582789/238f6b276b0a/fx1.jpg

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