首页> 美国卫生研究院文献>Cells >Microinjection of Antibodies Targeting the Lamin A/C Histone-Binding Site Blocks Mitotic Entry and Reveals Separate Chromatin Interactions with HP1 CenpB and PML
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Microinjection of Antibodies Targeting the Lamin A/C Histone-Binding Site Blocks Mitotic Entry and Reveals Separate Chromatin Interactions with HP1 CenpB and PML

机译:显微注射靶向Lamin A / C组蛋白结合位点的抗体可阻止有丝分裂进入并揭示与HP1CenpB和PML分离的染色质相互作用

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摘要

Lamins form a scaffold lining the nucleus that binds chromatin and contributes to spatial genome organization; however, due to the many other functions of lamins, studies knocking out or altering the lamin polymer cannot clearly distinguish between direct and indirect effects. To overcome this obstacle, we specifically targeted the mapped histone-binding site of A/C lamins by microinjecting antibodies specific to this region predicting that this would make the genome more mobile. No increase in chromatin mobility was observed; however, interestingly, injected cells failed to go through mitosis, while control antibody-injected cells did. This effect was not due to crosslinking of the lamin polymer, as Fab fragments also blocked mitosis. The lack of genome mobility suggested other lamin-chromatin interactions. To determine what these might be, mini-lamin A constructs were expressed with or without the histone-binding site that assembled into independent intranuclear structures. HP1, CenpB and PML proteins accumulated at these structures for both constructs, indicating that other sites supporting chromatin interactions exist on lamin A. Together, these results indicate that lamin A-chromatin interactions are highly redundant and more diverse than generally acknowledged and highlight the importance of trying to experimentally separate their individual functions.
机译:核纤层蛋白形成形成核内衬的支架,该支架结合染色质并有助于空间基因组的组织。然而,由于lamins的许多其他功能,敲除或改变lamin聚合物的研究不能清楚地区分直接效应和间接效应。为了克服这一障碍,我们通过微注射对该区域特异的抗体,专门靶向A / C lamins的映射组蛋白结合位点,预测这将使基因组更具移动性。没有观察到染色质迁移率增加;然而,有趣的是,注射的细胞未能通过有丝分裂,而注射对照抗体的细胞却发生了有丝分裂。该效果不是由于层状聚合物的交联所致,因为Fab片段也可阻断有丝分裂。基因组流动性的缺乏提示其他层粘连蛋白-染色质相互作用。为了确定这些可能是什么,在有或没有组蛋白结合位点的情况下表达微型层A构建体,所述组蛋白结合位点组装成独立的核内结构。 HP1,CenpB和PML蛋白在这两种构建体的这些结构上均积累,表明在层蛋白A上还存在其他支持染色质相互作用的位点。这些结果共同表明,层蛋白A-染色质相互作用比以往公认的高度冗余且多样性更高,并突出了重要性尝试从实验上分离其各自的功能。

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