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酿酒酵母假定的连接组蛋白H1——Hho1p的生化及表型特征

The biochemical and phenotypic characterization of Hho1p, the putative linker histone H1 of Saccharomyces cerevisiae.

作者信息

Patterton H G, Landel C C, Landsman D, Peterson C L, Simpson R T

机构信息

Department of Biochemistry and Molecular Biology, Pennsylvania State University, University Park, Pennsylvania 16802, USA.

出版信息

J Biol Chem. 1998 Mar 27;273(13):7268-76. doi: 10.1074/jbc.273.13.7268.

Abstract

There is currently no published report on the isolation and definitive identification of histone H1 in Saccharomyces cerevisiae. It was, however, recently shown that the yeast HHO1 gene codes for a predicted protein homologous to H1 of higher eukaryotes (Landsman, D. (1996) Trends Biochem. Sci. 21, 287-288; Ushinsky, S. C., Bussey, H. , Ahmed, A. A., Wang, Y., Friesen, J., Williams, B. A., and Storms, R. K. (1997) Yeast 13, 151-161), although there is no biochemical evidence that shows that Hho1p is, indeed, yeast histone H1. We showed that purified recombinant Hho1p (rHho1p) has electrophoretic and chromatographic properties similar to linker histones. The protein forms a stable ternary complex with a reconstituted core di-nucleosome in vitro at molar rHho1p:core ratios up to 1. Reconstitution of rHho1p with H1-stripped chromatin confers a kinetic pause at approximately 168 base pairs in the micrococcal nuclease digestion pattern of the chromatin. These results strongly suggest that Hho1p is a bona fide linker histone. We deleted the HHO1 gene and showed that the strain is viable and has no growth or mating defects. Hho1p is not required for telomeric silencing, basal transcriptional repression, or efficient sporulation. Unlike core histone mutations, a hho1Delta strain does not exhibit a Sin or Spt phenotype. The absence of Hho1p does not lead to a change in the nucleosome repeat length of bulk chromatin nor to differences in the in vivo micrococcal nuclease cleavage sites in individual genes as detected by primer extension mapping.

摘要

目前尚无关于在酿酒酵母中分离和明确鉴定组蛋白H1的公开报道。然而,最近有研究表明,酵母HHO1基因编码一种预测的蛋白质,该蛋白质与高等真核生物的H1同源(Landsman, D. (1996) Trends Biochem. Sci. 21, 287 - 288; Ushinsky, S. C., Bussey, H., Ahmed, A. A., Wang, Y., Friesen, J., Williams, B. A., and Storms, R. K. (1997) Yeast 13, 151 - 161),尽管尚无生化证据表明Hho1p确实是酵母组蛋白H1。我们发现纯化的重组Hho1p(rHho1p)具有与连接组蛋白相似的电泳和色谱特性。该蛋白质在体外与重组的核心双核小体形成稳定的三元复合物,体外rHho1p与核心的摩尔比高达1。用去除H1的染色质重构rHho1p会在微球菌核酸酶消化染色质的模式中,在大约168个碱基对处产生动力学停顿。这些结果强烈表明Hho1p是一种真正的连接组蛋白。我们删除了HHO1基因,发现该菌株能够存活,且没有生长或交配缺陷。端粒沉默、基础转录抑制或高效孢子形成不需要Hho1p。与核心组蛋白突变不同,hho1Delta菌株不表现出Sin或Spt表型。Hho1p的缺失不会导致整体染色质的核小体重复长度发生变化,也不会导致通过引物延伸图谱检测到的各个基因在体内微球菌核酸酶切割位点出现差异。

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