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首页> 外文期刊>Journal of Cell Science >Assembly into chromatin and subtype-specific transcriptional effects of exogenous linker histones directly introduced into a living Physarum cell
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Assembly into chromatin and subtype-specific transcriptional effects of exogenous linker histones directly introduced into a living Physarum cell

机译:组装成染色质和直接引入活的Physarum细胞的外源接头组蛋白的亚型特异性转录作用

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The apparent diversity of linker histone subtypes may be related to their specific roles in defining functional states of chromatin in vivo. We have developed a novel method to study constitutive peptides throughout the cell cycle and have demonstrated that an exogenous linker histone could be introduced into a living cell of the slime mold Physarum polycephalum. Here, we have used this method to assess the functional differences between three somatic linker histone subtypes in vivo, and to demonstrate the general applicability of this method. Exogenous linker histone proteins H1 degrees, H5 and H1 were directly absorbed into living cell segments of the naturally synchronous Physarum macroplasmodia at precise cell cycle stages. Fluorescence microscopy, native nucleoprotein gels and immunoblotting of nuclei and chromatin with subtype-specific antibodies revealed that exogenous linker histones were efficiently transported into nuclei and were integrated into chromatin, The immunoreactivity of a preparation of anti-H1 degrees antibodies that are blocked from binding to specific H1 degrees epitopes in native chromatin indicates that the exogenous linker histones were similarly associated into Physarum chromatin, Interestingly, linker histones were found to be less stably associated with Physarum chromatin during S-phase than during G(2)-phase. Furthermore, we show, that exogenous linker histones incorporated in early G(2)-phase inhibited transcription and that the level of inhibition correlates with the apparent role of the linker histone subtype in regulating transcription in cells where it normally occurs. [References: 39]
机译:接头组蛋白亚型的表观多样性可能与其在体内确定染色质功能状态中的特定作用有关。我们已经开发出一种新颖的方法来研究整个细胞周期中的组成型肽,并证明了可以将外源接头组蛋白引入粘液霉菌多头Phys的活细胞中。在这里,我们已经使用这种方法来评估体内三种体细胞接头组蛋白亚型之间的功能差异,并证明该方法的一般适用性。在精确的细胞周期阶段,外源接头组蛋白H1度,H5和H1被直接吸收到自然同步的Physarum macroplasmodiadia的活细胞片段中。荧光显微镜,天然核蛋白凝胶以及亚型特异性抗体对细胞核和染色质的免疫印迹显示,外源接头组蛋白可有效转运到细胞核中并整合到染色质中。抗H1度抗体制剂的免疫反应性被阻止与天然染色质中特定的H1度表位表明外源接头组蛋白与Physarum染色质相似地相关。有趣的是,发现接头组蛋白在S期期间与Physarum染色质的稳定相关性低于在G(2)期中。此外,我们表明,早期G(2)阶段纳入的外源接头组蛋白抑制转录,并且抑制水平与接头组蛋白亚型在调节正常发生在细胞中的转录中的明显作用相关。 [参考:39]

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