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Human centromeric CENP-A chromatin is a homotypic, octameric nucleosome at all cell cycle points

机译:人浓romeric cenp-a染色质是在所有细胞周期点处的偶型八大核苷酸

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Chromatin assembled with centromere protein A (CENP-A) is the epigenetic mark of centromere identity. Using new reference models, we now identify sites of CENP-A and histone H3.1 binding within the megabase, α-satellite repeat–containing centromeres of 23 human chromosomes. The overwhelming majority (97%) of α-satellite DNA is found to be assembled with histone H3.1–containing nucleosomes with wrapped DNA termini. In both G1 and G2 cell cycle phases, the 2–4% of α-satellite assembled with CENP-A protects DNA lengths centered on 133 bp, consistent with octameric nucleosomes with DNA unwrapping at entry and exit. CENP-A chromatin is shown to contain equimolar amounts of CENP-A and histones H2A, H2B, and H4, with no H3. Solid-state nanopore analyses show it to be nucleosomal in size. Thus, in contrast to models for hemisomes that briefly transition to octameric nucleosomes at specific cell cycle points or heterotypic nucleosomes containing both CENP-A and histone H3, human CENP-A chromatin complexes are octameric nucleosomes with two molecules of CENP-A at all cell cycle phases.
机译:染色质与Centromere蛋白A组装(CENP-A)组装是Centromere Identity的表观遗传标记。使用新的参考模型,我们现在识别CENP-A和组蛋白H3.1的网站,含有23个人染色体的α-卫星重复的焦体的结合。发现绝大多数(97%)α-卫星DNA被组装成含有组蛋白H3.1的核肉与包裹的DNA末端。在G1和G2细胞周期相中,2-4%的α-卫星与CENP-A组装的α-卫星保护DNA长度以133bp为中心,与八大核苷酸一致,其具有在进入和出口处的DNA展开。 CENP-A染色质显示为含有等摩尔量的CENP-A和组蛋白H2A,H2B和H4,没有H3。固态纳米孔分析显示尺寸为核致组。因此,与含有CENP-A和组蛋白H3的特定细胞周期点或异型核体的八大核肉的模型相反,人CENP-A染色质复合物是八核核桃,在所有细胞上是具有两个CENP-A分子的八大核苷酸循环阶段。

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