Institute for Advanced Biosciences (IAB), Team Host-Pathogen Interactions and Immunity to Infection, INSERM U1209, CNRS UMR5309, University Grenoble Alpes, Grenoble, France.
BIAM-LEMIRE, UMR 7265, CEA, CNRS, University Aix-Marseille, St-Paul-Lez-Durance, France.
Nat Microbiol. 2020 Apr;5(4):570-583. doi: 10.1038/s41564-020-0674-4. Epub 2020 Feb 24.
Toxoplasma gondii has a complex life cycle that is typified by asexual development that takes place in vertebrates, and sexual reproduction, which occurs exclusively in felids and is therefore less studied. The developmental transitions rely on changes in the patterns of gene expression, and recent studies have assigned roles for chromatin shapers, including histone modifications, in establishing specific epigenetic programs for each given stage. Here, we identified the T. gondii microrchidia (MORC) protein as an upstream transcriptional repressor of sexual commitment. MORC, in a complex with Apetala 2 (AP2) transcription factors, was shown to recruit the histone deacetylase HDAC3, thereby impeding the accessibility of chromatin at the genes that are exclusively expressed during sexual stages. We found that MORC-depleted cells underwent marked transcriptional changes, resulting in the expression of a specific repertoire of genes, and revealing a shift from asexual proliferation to sexual differentiation. MORC acts as a master regulator that directs the hierarchical expression of secondary AP2 transcription factors, and these transcription factors potentially contribute to the unidirectionality of the life cycle. Thus, MORC plays a cardinal role in the T. gondii life cycle, and its conditional depletion offers a method to study the sexual development of the parasite in vitro, and is proposed as an alternative to the requirement of T. gondii infections in cats.
刚地弓形虫具有复杂的生命周期,其特征为在脊椎动物中进行无性发育,以及仅在猫科动物中发生的有性繁殖,后者的研究较少。发育转变依赖于基因表达模式的变化,最近的研究将染色质塑形剂(包括组蛋白修饰)的作用分配给每个特定阶段的特定表观遗传程序。在这里,我们将刚地弓形虫微线体(MORC)蛋白鉴定为性承诺的上游转录抑制剂。MORC 与 AP2 转录因子形成复合物,被证明可以募集组蛋白去乙酰化酶 HDAC3,从而阻碍仅在有性阶段表达的基因的染色质可及性。我们发现,MORC 耗尽的细胞发生了明显的转录变化,导致特定基因表达谱的表达,并显示出从无性增殖到有性分化的转变。MORC 作为一种主调控因子,指导二级 AP2 转录因子的分层表达,这些转录因子可能有助于生命周期的单向性。因此,MORC 在刚地弓形虫生命周期中起着至关重要的作用,其条件性缺失提供了一种在体外研究寄生虫有性发育的方法,并被提议作为替代猫科动物感染刚地弓形虫的要求。