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组蛋白基因转录:一个关于对介导细胞周期调控及增殖/分化相互关系的一系列整合调控信号作出反应的模型。

Histone gene transcription: a model for responsiveness to an integrated series of regulatory signals mediating cell cycle control and proliferation/differentiation interrelationships.

作者信息

Stein G S, Stein J L, van Wijnen A J, Lian J B

机构信息

Department of Cell Biology, University of Massachusetts Medical Center, Worcester 01655.

出版信息

J Cell Biochem. 1994 Apr;54(4):393-404. doi: 10.1002/jcb.240540406.

Abstract

Histone gene expression is restricted to the S-phase of the cell cycle. Control is at multiple levels and is mediated by the integration of regulatory signals in response to cell cycle progression and the onset of differentiation. The H4 gene promoter is organized into a series of independent and overlapping regulatory elements which exhibit selective, phosphorylation-dependent interactions with multiple transactivation factors. The three-dimensional organization of the promoter and, in particular, its chromatin structure, nucleosome organization, and interactions with the nuclear matrix may contribute to interrelationships of activities at multiple promoter elements. Molecular mechanisms are discussed that may participate in the coordinate expression of S-phase-specific core and H1 histone genes, together with other genes functionally coupled with DNA replication.

摘要

组蛋白基因的表达仅限于细胞周期的S期。其调控存在于多个层面,通过整合响应细胞周期进程和分化起始的调控信号来介导。H4基因启动子由一系列独立且重叠的调控元件组成,这些元件与多种反式激活因子表现出选择性的、磷酸化依赖性的相互作用。启动子的三维结构,特别是其染色质结构、核小体组织以及与核基质的相互作用,可能有助于多个启动子元件活性之间的相互关系。文中讨论了可能参与S期特异性核心组蛋白和H1组蛋白基因以及其他与DNA复制功能相关基因的协同表达的分子机制。

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