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核小体不同电泳形式的亚基结构。

Subunit structures of different electrophoretic forms of nucleosomes.

作者信息

Albright S C, Wiseman J M, Lange R A, Garrard W T

出版信息

J Biol Chem. 1980 Apr 25;255(8):3673-84.

PMID:7364765
Abstract

We have reported previously that five different electrophoretic forms of mononucleosomes (MI to MV) are produced upon treatment of mammalian chromatin with micrococcal nuclease. We show here that each of these mononucleosome classes possesses internal heterogeneity due to the presence of a variety of minor protein species. Defined subsets of mononucleosome classes MII to MV have been reconstituted by reassociating stripped nucleosomes with histone H1 and non-histone protein HMG-17. This procedure leads to the generation of the same five major electrophoretic forms of mononucleosomes found in native chromatin. From the results of one- and two-dimensional electrophoretic analyses on reconstituted samples, it is concluded that different mononucleosome classes possess the following subunit structures: MI, core histone octamer (8-mer); MII, 8-mer plus one copy of HMG-17; MIIIA, 8-mer plus one copy of histone H1; MIIIB, 8-mer plus two copies of HMG-17; MIV, 8-mer plus one copy each of histone H1 and HMG-17; and MV, 8-mer plus one copy of histone H1 and two copies of HMG-17. Equal numbers of HMG-14 molecules can substitute for HMG-17 and generate the same nucleosome components. Thus, mononucleosomes possess independent binding sites for at least 1 histone H1 molecule and 2 nonhistone chromosomal protein molecules. We show further that reassociated HMG-17 molecules can exhibit a rapid interchange between binding sites, even under conditions of low ionic strength.

摘要

我们之前报道过,用微球菌核酸酶处理哺乳动物染色质会产生五种不同电泳形式的单核小体(MⅠ至MⅤ)。我们在此表明,由于存在多种次要蛋白质种类,这些单核小体类别中的每一种都具有内部异质性。通过将去除组蛋白的核小体与组蛋白H1和非组蛋白HMG - 17重新结合,已重建了MⅡ至MⅤ单核小体类别的特定子集。此过程导致产生与天然染色质中发现的相同的五种主要电泳形式的单核小体。根据对重建样品的一维和二维电泳分析结果,得出不同单核小体类别具有以下亚基结构:MⅠ,核心组蛋白八聚体(8聚体);MⅡ,8聚体加一份HMG - 17;MⅢA,8聚体加一份组蛋白H1;MⅢB,8聚体加两份HMG - 17;MⅣ,8聚体加一份组蛋白H1和一份HMG - 17;MⅤ,8聚体加一份组蛋白H1和两份HMG - 17。等量的HMG - 14分子可以替代HMG - 17并产生相同的核小体成分。因此,单核小体具有至少1个组蛋白H1分子和2个非组蛋白染色体蛋白分子的独立结合位点。我们进一步表明,重新结合的HMG - 17分子即使在低离子强度条件下也能在结合位点之间快速交换。

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