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需要多个Nhp6分子来招募Spt16-Pob3以形成yFACT复合物并重组核小体。

Multiple Nhp6 molecules are required to recruit Spt16-Pob3 to form yFACT complexes and to reorganize nucleosomes.

作者信息

Ruone Susan, Rhoades Alison R, Formosa Tim

机构信息

University of Utah School of Medicine, Department of Biochemistry, Salt Lake City, Utah 84132, USA.

出版信息

J Biol Chem. 2003 Nov 14;278(46):45288-95. doi: 10.1074/jbc.M307291200. Epub 2003 Sep 1.

DOI:10.1074/jbc.M307291200
PMID:12952948
Abstract

The Saccharomyces cerevisiae Nhp6 protein contains a DNA-binding motif that is similar to those found in the high mobility group B family of chromatin proteins. Nhp6 bound to nucleosomes and made at least two changes in them: the nucleosomal DNA became more sensitive to DNase I at specific sites, and the nucleosomes became competent to bind Spt16-Pob3 to form yFACT.nucleosome complexes. Both changes occurred at similar concentrations of Nhp6, suggesting that they reflect the same structural reorganization of the nucleosome. Nucleosomes have multiple binding sites for Nhp6, and structural reorganization was associated with a concentration of Nhp6 about 10-fold higher than that needed for simple binding. We propose that the coordinated action of multiple Nhp6 molecules is required to convert nucleosomes to an alternative form as the first step in a two-step reorganization of nucleosomes with the second step being dependent on Spt16-Pob3. The presence of linker DNA had only subtle effects on these processes, indicating that both Nhp6 and yFACT act on core nucleosome structure rather than on the interaction between nucleosomes and adjacent DNA. These results suggest that Nhp6 and the related high mobility group B proteins may have a general role in promoting rearrangements of chromatin by initiating the destabilization of core nucleosomal structure.

摘要

酿酒酵母Nhp6蛋白含有一个DNA结合基序,该基序与染色质蛋白高迁移率族B家族中发现的基序相似。Nhp6与核小体结合并使其发生至少两个变化:核小体DNA在特定位点对DNase I变得更敏感,并且核小体变得能够结合Spt16 - Pob3以形成yFACT - 核小体复合物。这两个变化在相似浓度的Nhp6下发生,表明它们反映了核小体相同的结构重组。核小体有多个Nhp6结合位点,并且结构重组与Nhp6的浓度相关,该浓度比简单结合所需的浓度高约10倍。我们提出,多个Nhp6分子的协同作用是将核小体转化为另一种形式所必需的,这是核小体两步重组的第一步,第二步依赖于Spt16 - Pob3。连接DNA的存在对这些过程只有细微影响,表明Nhp6和yFACT都作用于核心核小体结构,而不是核小体与相邻DNA之间的相互作用。这些结果表明,Nhp6和相关的高迁移率族B蛋白可能通过启动核心核小体结构的去稳定化在促进染色质重排中发挥普遍作用。

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