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非洲爪蟾5S RNA基因的侧翼序列决定了体外H1组蛋白对转录的差异抑制作用。H1的有丝分裂磷酸化降低了其抑制能力。

Flanking sequences of Xenopus 5 S RNA genes determine differential inhibition of transcription by H1 histone in vitro. Mitotic phosphorylation of H1 decreases its inhibitory power.

作者信息

Jerzmanowski A, Cole R D

机构信息

Department of Molecular and Cell Biology, University of California, Berkeley 94720.

出版信息

J Biol Chem. 1990 Jun 25;265(18):10726-32.

PMID:2355019
Abstract

In Xenopus laevis chromatin histone H1 selectively inhibits the transcription of oocyte 5 S RNA genes while not affecting the transcription of somatic 5 S RNA genes (Schlissel, M. S., and Brown, D. D. (1984) Cell 37, 903-913; Wolffe, A. P. (1989) EMBO J. 8, 527-537). To explore possible mechanisms of this specific action of H1 we analyzed the in vitro transcription of H1.DNA complexes. We found that the selective inhibitory effect of H1 in this system depends entirely on the flanking sequences of 5 S RNA genes and not on the coding sequence itself. At an H1:DNA ratio above approximately 0.4, H1 strongly inhibited the transcription of the gene surrounded by the A + T-rich flanks characteristic of oocyte 5 S RNA genes, whereas it did not prevent transcription of the genes surrounded by G + C-rich somatic-type flanks. This was reflected by strongly preferential binding of H1 to isolated 5 S RNA genes contained within A + T-rich flanks. We also showed that superphosphorylation of H1 with growth-associated (mitotic) H1 kinase invariably decreased H1's ability to inhibit transcription in an in vitro system.

摘要

在非洲爪蟾染色质中,组蛋白H1可选择性抑制卵母细胞5S RNA基因的转录,而不影响体细胞5S RNA基因的转录(施利塞尔,M.S.,和布朗,D.D.(1984年)《细胞》37卷,903 - 913页;沃尔夫,A.P.(1989年)《欧洲分子生物学组织杂志》8卷,527 - 537页)。为了探究H1这种特异性作用的可能机制,我们分析了H1 - DNA复合物的体外转录情况。我们发现,H1在该系统中的选择性抑制作用完全取决于5S RNA基因的侧翼序列,而非编码序列本身。当H1与DNA的比例高于约0.4时,H1强烈抑制由富含A + T的侧翼序列(这是卵母细胞5S RNA基因的特征)所包围的基因的转录,而对于由富含G + C的体细胞型侧翼序列所包围的基因,H1并不阻止其转录。这一点通过H1与富含A + T的侧翼序列中所含的分离5S RNA基因的强烈优先结合得以体现。我们还表明,用与生长相关的(有丝分裂)H1激酶对H1进行超磷酸化,总会降低H1在体外系统中抑制转录的能力。

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