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组蛋白H1的表达在硕大利什曼原虫的生命周期中会发生变化。

Histone H1 expression varies during the Leishmania major life cycle.

作者信息

Noll T M, Desponds C, Belli S I, Glaser T A, Fasel N J

机构信息

Biochemistry Institute, University of Lausanne, Epalinges, Switzerland.

出版信息

Mol Biochem Parasitol. 1997 Feb;84(2):215-27. doi: 10.1016/s0166-6851(96)02801-0.

Abstract

The deduced amino acid sequence of Leishmania major sw3 cDNA reveals the presence of characteristic histone H1 amino acid motifs. However, the open reading frame is of an unusually small size for histone H1 (105 amino acids) because it lacks the coding potential for the central hydrophobic globular domain of linker histones present in other eukaryotes. Here, we provide biochemical evidence that the SW3 protein is indeed a L. major nuclear histone H1, and that it is differentially expressed during the life cycle of the parasite. Due to its high lysine content, the SW3 protein can be purified to a high degree from L. major nuclear lysates with 5% perchloric acid, a histone H1 preparative method. Using an anti-SW3 antibody, this protein is detected as a 17 kDa or as a 17/19 kDa doublet in the nuclear subfraction in different L. major strains. The nuclear localization of the SW3 protein is further supported by immunofluorescence studies. During in vitro promastigote growth, both the sw3 cytoplasmic mRNA and its protein progressively accumulate within parasites from early log phase to stationary phase. Within amastigotes, the high level of H1 expression is maintained but decreases when amastigotes differentiate into promastigotes. Together, these observations suggest that the different levels of this histone H1 protein could influence the varying degrees of chromatin condensation during the life-cycle of the parasite, and provide us with tools to study this mechanism.

摘要

硕大利什曼原虫sw3 cDNA推导的氨基酸序列显示存在特征性组蛋白H1氨基酸基序。然而,该开放阅读框对于组蛋白H1来说异常小(105个氨基酸),因为它缺乏其他真核生物中存在的连接组蛋白中央疏水球状结构域的编码潜力。在此,我们提供了生化证据,证明SW3蛋白确实是硕大利什曼原虫的核组蛋白H1,并且它在寄生虫的生命周期中差异表达。由于其高赖氨酸含量,SW3蛋白可以用5%高氯酸(一种组蛋白H1制备方法)从硕大利什曼原虫核裂解物中高度纯化。使用抗SW3抗体,在不同的硕大利什曼原虫菌株的核亚组分中,该蛋白被检测为17 kDa或17/19 kDa的双峰。免疫荧光研究进一步支持了SW3蛋白的核定位。在体外前鞭毛体生长过程中,从对数早期到稳定期,sw3细胞质mRNA及其蛋白在寄生虫内逐渐积累。在无鞭毛体中,H1的高表达水平得以维持,但当无鞭毛体分化为前鞭毛体时表达水平降低。总之,这些观察结果表明,这种组蛋白H1蛋白的不同水平可能会影响寄生虫生命周期中染色质凝聚的不同程度,并为我们提供了研究这一机制的工具。

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