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Cell cycle-dependent binding of HMGN proteins to chromatin

机译:HMGN蛋白与染色质的细胞周期依赖性结合

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Throughout the cell cycle, the histones remain associated with DNA, but the repertoire of proteins associated with the chromatin fiber continuously changes. The chromatin interaction of HMGNs, a family of nucleosome binding proteins that modulates the structure and activity of chromatin, during the cell cycle is controversial. Immunofluorescence studies demonstrated that HMGNs are not associated with chromatin, whereas live cell imaging indicated that they are present in mitotic chromosomes. To resolve this controversy, we examined the organization of wild-type and mutated HMGN1 and HMGN2 proteins in the cell nucleus by using immunofluorescence studies, live cell imaging, gel mobility shift assays, and bimolecular fluorescence complementation (BiFC). We find that during interphase, HMGNs bind specifically to nucleosomes and form homodimeric complexes that yield distinct BiFC signals. In metaphase, the nucleosomal binding domain of the protein is inactivated, and the proteins associate with chromatin with low affinity as monomers, and they do not form specific complexes. Our studies demonstrate that the mode of binding of HMGNs to chromatin is cell cycle dependent.
机译:在整个细胞周期中,组蛋白仍与DNA结合,但与染色质纤维相关的蛋白质组成却不断变化。 HMGNs是一种核小体结合蛋白家族,其在细胞周期中调节染色质的结构和活性,其染色质相互作用是有争议的。免疫荧光研究表明,HMGNs与染色质不相关,而活细胞成像表明它们存在于有丝分裂染色体中。为了解决这个争议,我们通过使用免疫荧光研究,活细胞成像,凝胶迁移率移动分析和双分子荧光互补(BiFC)研究了细胞核中野生型和突变的HMGN1和HMGN2蛋白的组织。我们发现,在相间期,HMGNs特异地结合到核小体,并形成产生不同的BiFC信号的同型二聚体复合物。在中期,蛋白质的核小体结合结构域被失活,并且蛋白质以低亲和力作为单体与染色质结合,并且它们不形成特异性复合物。我们的研究表明,HMGNs与染色质的结合模式是细胞周期依赖性的。

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