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疟原虫 NOT1-G 旁系同源物是性阶段成熟和寄生虫传播的必需调控因子。

The Plasmodium NOT1-G paralogue is an essential regulator of sexual stage maturation and parasite transmission.

机构信息

Department of Biochemistry and Molecular Biology, The Huck Center for Malaria Research, Pennsylvania State University, University Park, Pennsylvania, United States of America.

Huck Institutes of the Life Sciences, Pennsylvania State University, University Park, Pennsylvania, United States of America.

出版信息

PLoS Biol. 2021 Oct 21;19(10):e3001434. doi: 10.1371/journal.pbio.3001434. eCollection 2021 Oct.

Abstract

Productive transmission of malaria parasites hinges upon the execution of key transcriptional and posttranscriptional regulatory events. While much is now known about how specific transcription factors activate or repress sexual commitment programs, far less is known about the production of a preferred mRNA homeostasis following commitment and through the host-to-vector transmission event. Here, we show that in Plasmodium parasites, the NOT1 scaffold protein of the CAF1/CCR4/Not complex is duplicated, and one paralogue is dedicated for essential transmission functions. Moreover, this NOT1-G paralogue is central to the sex-specific functions previously associated with its interacting partners, as deletion of not1-g in Plasmodium yoelii leads to a comparable or complete arrest phenotype for both male and female parasites. We show that, consistent with its role in other eukaryotes, PyNOT1-G localizes to cytosolic puncta throughout much of the Plasmodium life cycle. PyNOT1-G is essential to both the complete maturation of male gametes and to the continued development of the fertilized zygote originating from female parasites. Comparative transcriptomics of wild-type and pynot1-g- parasites shows that loss of PyNOT1-G leads to transcript dysregulation preceding and during gametocytogenesis and shows that PyNOT1-G acts to preserve mRNAs that are critical to sexual and early mosquito stage development. Finally, we demonstrate that the tristetraprolin (TTP)-binding domain, which acts as the typical organization platform for RNA decay (TTP) and RNA preservation (ELAV/HuR) factors is dispensable for PyNOT1-G's essential blood stage functions but impacts host-to-vector transmission. Together, we conclude that a NOT1-G paralogue in Plasmodium fulfills the complex transmission requirements of both male and female parasites.

摘要

疟原虫寄生虫的有效传播取决于关键转录和转录后调节事件的执行。虽然现在已经了解了特定转录因子如何激活或抑制性承诺程序,但对于承诺后和通过宿主到载体传播事件产生首选 mRNA 动态平衡的了解要少得多。在这里,我们表明在疟原虫寄生虫中,CAF1/CCR4/Not 复合物的 NOT1 支架蛋白被复制,并且一个同源物专门用于基本的传播功能。此外,这种 NOT1-G 同源物对于其相互作用伙伴以前与性特异性功能相关,因为在疟原虫 yoelii 中缺失 not1-g 会导致雄性和雌性寄生虫都出现类似或完全停滞的表型。我们表明,与在其他真核生物中的作用一致,PyNOT1-G 在整个疟原虫生命周期中定位于细胞质点状结构。PyNOT1-G 对于雄性配子的完全成熟以及源自雌性寄生虫的受精卵的持续发育都是必不可少的。野生型和 pynot1-g-寄生虫的比较转录组学表明,PyNOT1-G 的缺失导致配子发生和配子发生过程中 RNA 调控失调,并表明 PyNOT1-G 作用是保存对性和早期蚊子阶段发育至关重要的 mRNA。最后,我们证明了三肽重复蛋白(TTP)结合域,它作为 RNA 降解(TTP)和 RNA 保存(ELAV/HuR)因子的典型组织平台对于 PyNOT1-G 的必需血液阶段功能是可有可无的,但会影响宿主到载体的传播。总的来说,我们得出结论,疟原虫中的 NOT1-G 同源物满足了雄性和雌性寄生虫复杂的传播要求。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e898/8562791/e13829208214/pbio.3001434.g001.jpg

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