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H3.H4四聚体指导核小体核心颗粒中的DNA和核心组蛋白八聚体组装。

H3.H4 tetramer directs DNA and core histone octamer assembly in the nucleosome core particle.

作者信息

Jorcano J L, Ruiz-Carrillo A

出版信息

Biochemistry. 1979 Mar 6;18(5):768-74. doi: 10.1021/bi00572a005.

Abstract

The way in which histones interact with DNA during in vitro assembly of nucleohistone has been examined. Chicken erythrocyte core histones H2A, H2B, H3, and H4 and lambdaDNA in 2 M NaCl were allowed to interact by stepwise decrease in the salt concentration. Binding, although weak, was first observed at 1.4 M NaCl and was essentially completed at 0.6 M NaCl. Analysis of the DNA-bound histones revealed that each of the histones in the pairs H2A,H2B and H3,H4 was always present in equimolar amounts and that the relative proportion of each pair was constant between 1.4 and 0.8 M NaCl. Evidence is presented suggesting that binding occurred via complexes of the four histones, the nature of which is likely to reflect the equilibrium among the octamer and its products of dissociation (Ruiz-Carrillo, A., & Jorcano, J.L. (1979) Biochemistry (preceding paper in this issue)). The presence of complexes of the four core histones is, however not required for the correct assembly of the nucleosome core particle. Nucleohistones obtained by adding at progressively lower ionic strengths the dimer H2A.H2B to the H3.H4-DNA complex (split reconstitutions) had the same characteristics as those assembled with the core histone complexes.

摘要

已经研究了在体外组装核组蛋白过程中组蛋白与DNA相互作用的方式。将鸡红细胞核心组蛋白H2A、H2B、H3和H4以及2M NaCl中的λDNA通过逐步降低盐浓度使其相互作用。结合作用虽然较弱,但在1.4M NaCl时首次观察到,在0.6M NaCl时基本完成。对与DNA结合的组蛋白的分析表明,H2A、H2B和H3、H4这两对组蛋白中的每一种总是以等摩尔量存在,并且在1.4至0.8M NaCl之间每对的相对比例是恒定的。有证据表明结合是通过四种组蛋白的复合物发生的,其性质可能反映了八聚体与其解离产物之间的平衡(Ruiz-Carrillo, A., & Jorcano, J.L. (1979) Biochemistry(本期之前的论文))。然而,核小体核心颗粒的正确组装并不需要四种核心组蛋白复合物的存在。通过在逐渐降低的离子强度下将二聚体H2A.H2B添加到H3.H4-DNA复合物中(拆分重组)获得的核组蛋白与用核心组蛋白复合物组装的核组蛋白具有相同的特征。

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