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组蛋白H3.3变体在疟原虫从合子到卵囊的发育过程中起关键作用。

Histone H3.3 variant plays a critical role on zygote-to-oocyst development in malaria parasites.

作者信息

Tateishi Yuki S, Araki Tamasa, Kawai Satoru, Koide Shuhei, Umeki Yuko, Imai Takashi, Saito-Nakano Yumiko, Kikuchi Masaki, Iwama Atsushi, Hisaeda Hajime, Coban Cevayir, Annoura Takeshi

机构信息

Department of Parasitology, National Institute of Infectious Diseases, Shinjuku-ku, Tokyo, Japan; Division of Malaria Immunology, Department of Microbiology and Immunology, The Institute of Medical Science, The University of Tokyo (IMSUT), Minato-ku, Tokyo, Japan; Graduate School of Frontier Sciences, Department of Computational Biology and Medical Science (CBMS), University of Tokyo, Tokyo, Japan.

Department of Parasitology, National Institute of Infectious Diseases, Shinjuku-ku, Tokyo, Japan.

出版信息

Parasitol Int. 2024 Jun;100:102856. doi: 10.1016/j.parint.2024.102856. Epub 2024 Jan 9.

Abstract

The Plasmodium life cycle involves differentiation into multiple morphologically distinct forms, a process regulated by developmental stage-specific gene expression. Histone proteins are involved in epigenetic regulation in eukaryotes, and the histone variant H3.3 plays a key role in the regulation of gene expression and maintenance of genomic integrity during embryonic development in mice. However, the function of H3.3 through multiple developmental stages in Plasmodium remains unknown. To examine the function of H3.3, h3.3-deficient mutants (Δh3.3) were generated in P. berghei. The deletion of h3.3 was not lethal in blood stage parasites, although it had a minor effect of the growth rate in blood stage; however, the in vitro ookinete conversion rate was significantly reduced, and the production of the degenerated form was increased. Regarding the mosquito stage development of Δh3.3, oocysts number was significantly reduced, and no sporozoite production was observed. The h3.3 gene complemented mutant have normal development in mosquito stage producing mature oocysts and salivary glands contained sporozoites, and interestingly, the majority of H3.3 protein was detected in female gametocytes. However, Δh3.3 male and female gametocyte production levels were comparable to the wild-type levels. Transcriptome analysis of Δh3.3 male and female gametocytes revealed the upregulation of several male-specific genes in female gametocytes, suggesting that H3.3 functions as a transcription repressor of male-specific genes to maintain sexual identity in female gametocytes. This study provides new insights into the molecular biology of histone variants H3.3 which plays a critical role on zygote-to-oocyst development in primitive unicellular eukaryotes.

摘要

疟原虫的生命周期涉及分化为多种形态不同的形式,这一过程由发育阶段特异性基因表达调控。组蛋白参与真核生物的表观遗传调控,组蛋白变体H3.3在小鼠胚胎发育过程中的基因表达调控和基因组完整性维持中起关键作用。然而,H3.3在疟原虫多个发育阶段的功能仍不清楚。为了研究H3.3的功能,在伯氏疟原虫中构建了h3.3基因缺失突变体(Δh3.3)。h3.3的缺失在血液阶段寄生虫中并非致命,尽管它对血液阶段的生长速率有轻微影响;然而,体外动合子转化率显著降低,退化形式的产生增加。关于Δh3.3在蚊子阶段的发育,卵囊数量显著减少,未观察到子孢子产生。h3.3基因互补突变体在蚊子阶段发育正常,产生成熟的卵囊,唾液腺中含有子孢子,有趣的是,在雌配子体中检测到大部分H3.3蛋白。然而,Δh3.3的雄配子体和雌配子体产生水平与野生型水平相当。对Δh3.3雄配子体和雌配子体的转录组分析显示,雌配子体中几个雄性特异性基因上调,这表明H3.3作为雄性特异性基因的转录抑制因子,在雌配子体中维持性别特征。本研究为组蛋白变体H3.3的分子生物学提供了新的见解,H3.3在原始单细胞真核生物的合子到卵囊发育中起关键作用。

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