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着丝粒蛋白A核小体解开外部超螺旋圈的自由能分布

Free energy profile for unwrapping outer superhelical turn of CENP-A nucleosome.

作者信息

Kono Hidetoshi, Sakuraba Shun, Ishida Hisashi

机构信息

Molecular Modelling and Simulation Group, Institute for Quantum Life Science (iQLS), National Institutes for Quantum and Radiological Science and Technology, Kizugawa, Kyoto 619-0215 Japan.

出版信息

Biophys Physicobiol. 2019 Nov 29;16:337-343. doi: 10.2142/biophysico.16.0_337. eCollection 2019.

Abstract

Eukaryotic genome is packaged in a nucleus in the form of chromatin. The fundamental structural unit of the chromatin is the protein-DNA complex, nucleosome, where DNA of about 150 bp is wrapped around a histone core almost twice. In cellular processes such as gene expression, DNA repair and duplication, the nucleosomal DNA has to be unwrapped. Histone proteins have their variants, indicating there are a variety of constitutions of nucleosomes. These different constitutions are observed in different cellular processes. To investigate differences among nucleosomes, we calculated free energy profiles for unwrapping the outer superhelical turn of CENP-A nucleosome and compared them with those of the canonical nucleosome. The free energy profiles for CENP-A nucleosome suggest that CENP-A nucleosome is the most stable when 16 to 22 bps are unwrapped in total whereas the canonical nucleosome is the most stable when it is fully wrapped. This indicates that the flexible conformation of CENP-A nucleosome is ready to provide binding sites for the structural integrity of the centromere.

摘要

真核生物基因组以染色质的形式包装在细胞核中。染色质的基本结构单位是蛋白质-DNA复合物,即核小体,其中约150bp的DNA几乎绕组蛋白核心缠绕两圈。在基因表达、DNA修复和复制等细胞过程中,核小体DNA必须解开缠绕。组蛋白有其变体,这表明核小体有多种组成形式。这些不同的组成形式在不同的细胞过程中被观察到。为了研究核小体之间的差异,我们计算了解开CENP-A核小体外层超螺旋圈的自由能分布,并将其与经典核小体的自由能分布进行比较。CENP-A核小体的自由能分布表明,当总共解开16至22个碱基对时,CENP-A核小体最稳定,而经典核小体完全包裹时最稳定。这表明CENP-A核小体的灵活构象随时准备为着丝粒的结构完整性提供结合位点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ceba/6975924/452d58a625b7/16_337f1.jpg

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