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是什么定位了核小体?——一个模型。

What positions nucleosomes?--A model.

作者信息

Kiyama Ryoiti, Trifonov Edward N

机构信息

Research Center for Glycoscience, National Institute of Advanced Industrial Science and Technology (AIST), Tsukuba, 305-8566, Ibaraki, Japan.

出版信息

FEBS Lett. 2002 Jul 17;523(1-3):7-11. doi: 10.1016/s0014-5793(02)02937-x.

Abstract

Here we propose a new determinant for localization of nucleosomes along genomic DNA, in addition to sequence-dependent features. The new specific class of chromatin scaling signals involves curved DNA. According to the observed positional distribution of DNA curvature, the new synchronizing signal occurs once per four nucleosomes on average. This new factor in nucleosome positioning should substantially influence the efficiency of biological reactions through regulatory factors microscopically and the entire chromatin structure through the 30 nm fiber structure macroscopically. Allocation of the new type of signals is found to be fixed evolutionarily although they could be shifted in accordance with the hierarchy of functional genomic structures.

摘要

除了序列依赖性特征外,我们在此提出一种用于核小体沿基因组DNA定位的新决定因素。新型的特定染色质缩放信号涉及弯曲的DNA。根据观察到的DNA曲率的位置分布,新的同步信号平均每四个核小体出现一次。核小体定位中的这一新因素在微观上应通过调节因子对生物反应的效率产生实质性影响,在宏观上则应通过30nm纤维结构对整个染色质结构产生影响。尽管新型信号的分配可能会根据功能基因组结构的层次而发生偏移,但发现其在进化上是固定的。

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