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组蛋白乙酰化、泛素化及变体对核小体稳定性的影响。

Effects of histone acetylation, ubiquitination and variants on nucleosome stability.

作者信息

Li W, Nagaraja S, Delcuve G P, Hendzel M J, Davie J R

机构信息

Department of Biochemistry and Molecular Biology, Faculty of Medicine, University of Manitoba, Winnipeg, Canada.

出版信息

Biochem J. 1993 Dec 15;296 ( Pt 3)(Pt 3):737-44. doi: 10.1042/bj2960737.

Abstract

The properties of the nucleosomes of a salt-soluble, transcriptionally active gene-enriched fraction of chicken erythrocyte chromatin were evaluated by hydroxyapatite dissociation chromatography. We have demonstrated previously that the salt-soluble, transcriptionally active gene-enriched polynucleosomes are enriched in dynamically acetylated and ubiquitinated histones, and in an atypical U-shaped nucleosome that possessed about 20% less protein than a typical nucleosome. Further, newly synthesized histones H2A and H2B exchange preferentially with the nucleosomal histones H2A and H2B of this salt-soluble chromatin fraction. Analysis of the histones eluting from the hydroxyapatite-bound chromatin demonstrated that hyperacetylated and ubiquitinated (u), including multi-ubiquitinated, H2A-H2B.1 dimers dissociated at lower concentrations of NaCl than unmodified dimers or dimers with histone variants H2A.Z and/or H2B.2. Cross-linking studies revealed that at least 50% of uH2B.1 was paired with uH2A. uH2A-uH2B.1 dimers dissociated at lower NaCl concentrations than H2A-uH2B.1 dimers. Hyperacetylated histone (H3-H4)2 tetramers also eluted at lower concentrations of NaCl than unmodified tetramers. Our results support the idea that acetylation and ubiquitination of histones H2A and H2B.1 increase the lability of H2A-H2B.1 dimers in transcriptionally active nucleosomes. In contrast, our observations suggest that histone variants H2A.Z and H2B.2. stabilize the association of the H2A-H2B dimer in nucleosomes. The elevated lability of the H2A-H2B dimer may facilitate processes such as the exchange of these dimers with newly synthesized histones, the elongation process of transcription and transcription factor binding.

摘要

通过羟基磷灰石解离色谱法评估了鸡红细胞染色质中盐溶性、富含转录活性基因部分的核小体特性。我们之前已经证明,盐溶性、富含转录活性基因的多核小体富含动态乙酰化和泛素化的组蛋白,以及一种非典型的U形核小体,其蛋白质含量比典型核小体少约20%。此外,新合成的组蛋白H2A和H2B优先与该盐溶性染色质部分的核小体组蛋白H2A和H2B进行交换。对从羟基磷灰石结合的染色质上洗脱的组蛋白进行分析表明,包括多泛素化的超乙酰化和泛素化(u)的H2A-H2B.1二聚体在比未修饰的二聚体或带有组蛋白变体H2A.Z和/或H2B.2的二聚体更低的NaCl浓度下解离。交联研究表明,至少50%的uH2B.1与uH2A配对。uH2A-uH2B.1二聚体在比H2A-uH2B.1二聚体更低的NaCl浓度下解离。超乙酰化的组蛋白(H3-H4)2四聚体也在比未修饰的四聚体更低的NaCl浓度下洗脱。我们的结果支持这样一种观点,即组蛋白H2A和H2B.1的乙酰化和泛素化增加了转录活性核小体中H2A-H2B.1二聚体的不稳定性。相比之下,我们的观察结果表明,组蛋白变体H2A.Z和H2B.2稳定了核小体中H2A-H2B二聚体的结合。H2A-H2B二聚体升高的不稳定性可能促进这些二聚体与新合成组蛋白的交换、转录的延伸过程和转录因子结合等过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f66d/1137757/b6473fcc4ce4/biochemj00097-0212-a.jpg

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