在全基因组范围内鉴定组蛋白赖氨酸甲基转移酶及其在中华绒螯虫卵壳形成相关基因的表观遗传调控中的意义。

0 PARASITOLOGY Parasites, hosts and diseases Pub Date : 2024-02-01 Epub Date: 2024-02-23 DOI:10.3347/PHD.23116
Min-Ji Park, Woon-Mok Sohn, Young-An Bae
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引用次数: 0

摘要

包括 DNA 和组蛋白赖氨酸甲基转移酶(分别为 DNMT 和 HKMT)在内的表观遗传学作家通过对功能基因表达的时空调控,在真核生物的分化和发育过程中发挥着重要作用。然而,长期以来,人们一直怀疑缺乏主要 DNA 甲基转移酶 DNMT1 和 DNMT3a/3b 的蠕虫寄生虫具有表观遗传机制。目前,有关寄生吸虫中表观遗传工具的进化状况及其在调控染色体基因中的作用的信息非常少。我们以前曾提出过一种类似 DNMT2 的蛋白(CsDNMT2)可能是中华鲎寄生虫中真正的表观遗传作者。在这里,我们分析了肝吸虫和其他扁形动物中 HKMT 亚家族成员的系统发育。在板虫基因组中,含有SET结构域的HKMT亚家族和端粒沉默破坏者1亚家族的大部分基因是保守的,而在某些板虫基因组中,一些基因则是特异性扩增的。由于 HKMT 活性基因的高剂量覆盖了不同但有些重叠的底物特异性,因此在中华鳖成虫的所有组织/器官中都能识别到不同的甲基化组蛋白。随着年龄的增长,参与卵壳形成的基因在时间上的表达量逐渐下降到最低水平,而一些表观遗传工具基因的表达量则在寄生虫的成虫后期重新增加。此外,这些表达水平受到 DNMT 和 HKMT 抑制剂的显著影响。我们的数据有力地表明,甲基化组蛋白是强有力的表观遗传标记,可调节中华寄生虫基因的时空表达,尤其是那些参与有性生殖的基因。
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Genome-wide identification of histone lysine methyltransferases and their implications in the epigenetic regulation of eggshell formation-related genes in a trematode parasite Clonorchis sinensis.

Epigenetic writers including DNA and histone lysine methyltransferases (DNMT and HKMT, respectively) play an initiative role in the differentiation and development of eukaryotic organisms through the spatiotemporal regulation of functional gene expressions. However, the epigenetic mechanisms have long been suspected in helminth parasites lacking the major DNA methyltransferases DNMT1 and DNMT3a/3b. Very little information on the evolutionary status of the epigenetic tools and their role in regulating chromosomal genes is currently available in the parasitic trematodes. We previously suggested the probable role of a DNMT2-like protein (CsDNMT2) as a genuine epigenetic writer in a trematode parasite Clonorchis sinensis. Here, we analyzed the phylogeny of HKMT subfamily members in the liver fluke and other platyhelminth species. The platyhelminth genomes examined conserved genes for the most of SET domain-containing HKMT and Disruptor of Telomeric Silencing 1 subfamilies, while some genes were expanded specifically in certain platyhelminth genomes. Related to the high gene dosages for HKMT activities covering differential but somewhat overlapping substrate specificities, variously methylated histones were recognized throughout the tissues/organs of C. sinensis adults. The temporal expressions of genes involved in eggshell formation were gradually decreased to their lowest levels proportionally to aging, whereas those of some epigenetic tool genes were re-boosted in the later adult stages of the parasite. Furthermore, these expression levels were significantly affected by treatment with DNMT and HKMT inhibitors. Our data strongly suggest that methylated histones are potent epigenetic markers that modulate the spatiotemporal expressions of C. sinensis genes, especially those involved in sexual reproduction.

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