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Mitotic homologous recombination maintains genomic stability and suppresses tumorigenesis.有丝分裂同源重组维持基因组稳定性并抑制肿瘤发生。
Nat Rev Mol Cell Biol. 2010 Mar;11(3):196-207. doi: 10.1038/nrm2851.
2
Molecular crowding affects diffusion and binding of nuclear proteins in heterochromatin and reveals the fractal organization of chromatin.分子拥挤会影响异染色质中核蛋白的扩散和结合,并揭示染色质的分形组织。
EMBO J. 2009 Dec 16;28(24):3785-98. doi: 10.1038/emboj.2009.340.
3
Two modules in the BRC repeats of BRCA2 mediate structural and functional interactions with the RAD51 recombinase.BRCA2 的 BRC 重复序列中的两个模块介导与 RAD51 重组酶的结构和功能相互作用。
Nucleic Acids Res. 2010 Jan;38(1):82-96. doi: 10.1093/nar/gkp873. Epub 2009 Oct 29.
4
The carboxyl terminus of Brca2 links the disassembly of Rad51 complexes to mitotic entry.Brca2的羧基末端将Rad51复合物的解体与有丝分裂进入联系起来。
Curr Biol. 2009 Jul 14;19(13):1075-85. doi: 10.1016/j.cub.2009.05.057. Epub 2009 Jun 18.
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Paxillin dynamics measured during adhesion assembly and disassembly by correlation spectroscopy.通过相关光谱法在黏附组装和解聚过程中测量桩蛋白动力学。
Biophys J. 2008 Apr 1;94(7):2819-31. doi: 10.1529/biophysj.107.104984. Epub 2007 Nov 9.
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Spatial regulation of Fus3 MAP kinase activity through a reaction-diffusion mechanism in yeast pheromone signalling.通过酵母信息素信号传导中的反应扩散机制对Fus3丝裂原活化蛋白激酶活性进行空间调控。
Nat Cell Biol. 2007 Nov;9(11):1319-26. doi: 10.1038/ncb1652. Epub 2007 Oct 21.
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Dynamic organization of the cell nucleus.细胞核的动态组织
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8
Probing transcription factor dynamics at the single-molecule level in a living cell.在活细胞的单分子水平上探究转录因子动力学。
Science. 2007 May 25;316(5828):1191-4. doi: 10.1126/science.1141967.
9
Positional stability of single double-strand breaks in mammalian cells.哺乳动物细胞中单双链断裂的位置稳定性
Nat Cell Biol. 2007 Jun;9(6):675-82. doi: 10.1038/ncb1591. Epub 2007 May 7.
10
DNA double-strand break repair: from mechanistic understanding to cancer treatment.DNA双链断裂修复:从机制理解到癌症治疗
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DNA 损伤调控 Brca2 在活细胞核质中的流动性。

DNA damage regulates the mobility of Brca2 within the nucleoplasm of living cells.

机构信息

The Medical Research Council Cancer Cell Unit, Hutchison/Medical Research Council Research Centre, Cambridge CB2 0XZ, United Kingdom.

出版信息

Proc Natl Acad Sci U S A. 2010 Dec 14;107(50):21937-42. doi: 10.1073/pnas.1009577107. Epub 2010 Nov 22.

DOI:10.1073/pnas.1009577107
PMID:21098284
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3003017/
Abstract

How the biochemical reactions that lead to the repair of DNA damage are controlled by the diffusion and availability of protein reactants within the nucleoplasm is poorly understood. Here, we use gene targeting to replace Brca2 (a cancer suppressor protein essential for DNA repair) with a functional enhanced green fluorescent protein (EGFP)-tagged form, followed by fluorescence correlation spectroscopy to measure Brca2-EGFP diffusion in the nucleoplasm of living cells exposed to DNA breakage. Before damage, nucleoplasmic Brca2 molecules exhibit complex states of mobility, with long dwell times within a sub-fL observation volume, indicative of restricted motion. DNA damage significantly enhances the mobility of Brca2 molecules in the S/G2 phases of the cell cycle, via signaling through damage-activated protein kinases. Brca2 mobilization is accompanied by increased binding within the nucleoplasm to its cargo, the Rad51 recombinase, measured by fluorescence cross-correlation spectroscopy. Together, these results suggest that DNA breakage triggers the redistribution of soluble nucleoplasmic Brca2 molecules from a state of restricted diffusion, into a mobile fraction available for Rad51 binding. Our findings identify signal-regulated changes in nucleoplasmic protein diffusion as a means to control biochemical reactions in the cell nucleus.

摘要

在核质中,蛋白质反应物的扩散和可用性如何控制导致 DNA 损伤修复的生化反应,目前人们对此知之甚少。在这里,我们使用基因靶向技术将 BRCA2(一种对 DNA 修复至关重要的癌症抑制蛋白)替换为功能性增强型绿色荧光蛋白(EGFP)标记形式,然后使用荧光相关光谱法测量活细胞中暴露于 DNA 断裂时核质中 BRCA2-EGFP 的扩散。在损伤之前,核质中的 BRCA2 分子表现出复杂的流动性状态,在亚 fL 观察体积内停留时间长,表明运动受限。通过损伤激活的蛋白激酶信号转导,在细胞周期的 S/G2 期,DNA 损伤显著增强了 BRCA2 分子的流动性。BRCA2 的动员伴随着与核质中其货物 Rad51 重组酶的结合增加,通过荧光互相关光谱法测量。总之,这些结果表明,DNA 断裂触发了可溶核质中 BRCA2 分子从受限扩散状态到可用于 Rad51 结合的移动部分的重新分布。我们的发现确定了信号调节的核质蛋白扩散变化是控制细胞内生化反应的一种手段。