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组蛋白H1的球状结构域足以在非洲爪蟾早期胚胎中指导特定基因的抑制。

The globular domain of histone H1 is sufficient to direct specific gene repression in early Xenopus embryos.

作者信息

Vermaak D, Steinbach O C, Dimitrov S, Rupp R A, Wolffe A P

机构信息

Laboratory of Molecular Embryology National Institute of Child Health and Human Development NIH Building 18T, Room 106, Bethesda, Maryland, 20892-5431, USA.

出版信息

Curr Biol. 1998 Apr 23;8(9):533-6. doi: 10.1016/s0960-9822(98)70206-4.

DOI:10.1016/s0960-9822(98)70206-4
PMID:9560345
Abstract

One molecule of a linker histone such as histone H1 is incorporated into every metazoan nucleosome [1]. Histone H1 has three distinct structural domains: the positively charged amino-terminal and carboxy-terminal tails are separated by a globular domain that is similar to the winged-helix motif found in sequence-specific DNA-binding proteins [2]. The globular domain interacts with DNA immediately contiguous to that wrapped around the core histones [3,4], whereas the tail domains are important for the compaction of nucleosomal arrays [5]. Experiments in vivo indicate that histone H1 does not function as a global transcriptional repressor, but instead has more specific regulatory roles [6-9]. In Xenopus, maternal stores of the B4 linker histone that are assembled into chromatin during the early cleavage divisions are replaced by somatic histone H1 during gastrulation [10]. This transition in chromatin composition causes the repression of genes encoding oocyte-type 5S rRNAs, and restricts the competence of ectodermal cells to differentiate into mesoderm [6,9-11]. Here, we demonstrate that the globular domain of histone H1 is sufficient for directing gene-specific transcriptional repression and for restricting the mesodermal competence of embryonic ectoderm. We discuss our results in the context of specific structural roles for this domain in the nucleosome.

摘要

诸如组蛋白H1这样的连接组蛋白分子会被整合到每一个后生动物核小体中[1]。组蛋白H1有三个不同的结构域:带正电荷的氨基末端和羧基末端尾巴被一个球状结构域隔开,该球状结构域类似于在序列特异性DNA结合蛋白中发现的翼状螺旋基序[2]。球状结构域与紧邻缠绕在核心组蛋白周围的DNA相互作用[3,4],而尾巴结构域对于核小体阵列的压缩很重要[5]。体内实验表明,组蛋白H1并非作为全局转录抑制因子发挥作用,而是具有更特定的调控作用[6-9]。在非洲爪蟾中,在早期卵裂分裂期间组装到染色质中的B4连接组蛋白的母体储存物在原肠胚形成期间被体细胞组蛋白H1所取代[10]。染色质组成的这种转变导致编码卵母细胞型5S rRNA的基因受到抑制,并限制外胚层细胞分化为中胚层的能力[6,9-11]。在这里,我们证明组蛋白H1的球状结构域足以指导基因特异性转录抑制并限制胚胎外胚层的中胚层能力。我们在该结构域在核小体中的特定结构作用的背景下讨论我们的结果。

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The globular domain of histone H1 is sufficient to direct specific gene repression in early Xenopus embryos.组蛋白H1的球状结构域足以在非洲爪蟾早期胚胎中指导特定基因的抑制。
Curr Biol. 1998 Apr 23;8(9):533-6. doi: 10.1016/s0960-9822(98)70206-4.
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Somatic linker histones cause loss of mesodermal competence in Xenopus.体细胞连接组蛋白导致非洲爪蟾中胚层能力丧失。
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