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疟原虫中环鸟苷酸(cGMP)的动态平衡——感知和整合向蚊子传播过程中环境变化的关键。

cGMP homeostasis in malaria parasites-The key to perceiving and integrating environmental changes during transmission to the mosquito.

机构信息

Department of Microbiology and Molecular Medicine, Faculty of Medicine, University of Geneva, Geneva, Switzerland.

出版信息

Mol Microbiol. 2021 May;115(5):829-838. doi: 10.1111/mmi.14633. Epub 2020 Nov 21.

Abstract

Malaria-causing parasites are transmitted from humans to mosquitoes when developmentally arrested gametocytes are taken up by a female Anopheles during a blood meal. The changes in environment from human to mosquito activate gametogenesis, including a drop in temperature, a rise in pH, and a mosquito-derived molecule, xanthurenic acid. Signaling receptors have not been identified in malaria parasites but mounting evidence indicates that cGMP homeostasis is key to sensing extracellular cues in gametocytes. Low levels of cGMP maintained by phosphodiesterases prevent precocious activation of gametocytes in the human blood. Upon ingestion, initiation of gametogenesis depends on the activation of a hybrid guanylyl cyclase/P4-ATPase. Elevated cGMP levels lead to the rapid mobilization of intracellular calcium that relies upon the activation of both cGMP-dependent protein kinase and phosphoinositide phospholipase C. Once calcium is released, a cascade of phosphorylation events mediated by calcium-dependent protein kinases and phosphatases regulates the cellular processes required for gamete formation. cGMP signaling also triggers timely egress from the host cell at other life cycle stages of malaria parasites and in Toxoplasma gondii, a related apicomplexan parasite. This suggests that cGMP signaling is a versatile platform transducing external cues into calcium signals at important decision points in the life cycle of apicomplexan parasites.

摘要

疟原虫引起的寄生虫通过发育停滞的配子体在雌性按蚊吸血时被吸收而从人类传播到蚊子。从人类到蚊子的环境变化激活配子发生,包括温度下降、pH 值上升和蚊子衍生的分子黄嘌呤酸。信号受体在疟原虫中尚未被鉴定,但越来越多的证据表明 cGMP 动态平衡是感应配子体中外源线索的关键。磷酸二酯酶维持的低水平 cGMP 可防止配子体在人血中过早激活。一旦被摄取,配子发生的启动取决于杂种鸟苷酸环化酶/P4-ATP 酶的激活。cGMP 水平的升高导致细胞内钙的快速动员,这依赖于 cGMP 依赖性蛋白激酶和磷酸肌醇磷脂酶 C 的激活。一旦钙释放,钙依赖性蛋白激酶和磷酸酶介导的一系列磷酸化事件调节配子形成所需的细胞过程。cGMP 信号还在疟原虫和相关的顶复门寄生虫弓形虫的其他生命周期阶段触发从宿主细胞的适时退出。这表明 cGMP 信号是一个多功能平台,可将外部线索转化为顶复门寄生虫生命周期中重要决策点的钙信号。

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