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组蛋白H1与染色质高级结构。组蛋白H1是否表现出特定的自我缔合?

Histone H1 and chromatin higher order structure. Does histone H1 exhibit specific self-association?

作者信息

Russo E, Giancotti V, Crane-Robinson C, Geraci G

出版信息

Int J Biochem. 1983;15(4):487-93. doi: 10.1016/0020-711x(83)90121-0.

Abstract
  1. Histones H1 and H5 in chromatin and in free solution can be cross-linked to higher multimers. Is this due to a specific protein/protein interaction? If so, this interaction might be the structural basis of the condensation of the chromosomal nucleofilament, known to be mediated by histones H1 and H5. 2. Since only the central domain of H1 and H5 exhibits tertiary folding and globular structure, this is the most likely site of specific interaction. 3. Formaldehyde has been used to test whether the central domains of histone H1 from calf thymus or from sea urchin sperm or histone H5 from chicken erythrocytes self-interact. 4. The cross-linking shown by each globular peptide was compared with that of its parent histone. 5. In all three cases the peptide cross-linked to a much lower extent than its intact parent histone and the observed cross-linked rates were roughly in proportion to the relative number of lysine residues parent histone and peptide. 6. It is concluded that there is no specific self-interaction between the globular domains of either H1 or H5 molecules in free solution. 7. This result suggests that specific H1/H1 protein/protein interactions are not the basic cause of chromatin condensation.
摘要
  1. 染色质中和游离溶液中的组蛋白H1和H5可交联形成更高的多聚体。这是由于特定的蛋白质/蛋白质相互作用吗?如果是这样,这种相互作用可能是染色体核丝凝聚的结构基础,已知其由组蛋白H1和H5介导。2. 由于只有H1和H5的中央结构域呈现三级折叠和球状结构,这是最可能发生特异性相互作用的位点。3. 甲醛已被用于测试来自小牛胸腺或海胆精子的组蛋白H1的中央结构域,或来自鸡红细胞的组蛋白H5是否会自身相互作用。4. 将每个球状肽显示的交联与其亲本组蛋白的交联进行比较。5. 在所有三种情况下,肽的交联程度远低于其完整的亲本组蛋白,并且观察到的交联速率大致与亲本组蛋白和肽中赖氨酸残基的相对数量成比例。6. 得出的结论是,在游离溶液中,H1或H5分子的球状结构域之间不存在特异性的自身相互作用。7. 这一结果表明,特异性的H1/H1蛋白质/蛋白质相互作用不是染色质凝聚的根本原因。

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