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钙和一种钙依赖性蛋白激酶调节疟原虫的配子形成和蚊子传播。

Calcium and a calcium-dependent protein kinase regulate gamete formation and mosquito transmission in a malaria parasite.

作者信息

Billker Oliver, Dechamps Sandrine, Tewari Rita, Wenig Gerald, Franke-Fayard Blandine, Brinkmann Volker

机构信息

Department of Biological Sciences, Imperial College London, London SW7 2AZ, United Kingdom.

出版信息

Cell. 2004 May 14;117(4):503-14. doi: 10.1016/s0092-8674(04)00449-0.

Abstract

Transmission of malaria parasites to mosquitoes is initiated by the obligatory sexual reproduction of the parasite within the mosquito bloodmeal. Differentiation of specialized transmission stages, the gametocytes, into male and female gametes is induced by a small mosquito molecule, xanthurenic acid (XA). Using a Plasmodium berghei strain expressing a bioluminescent calcium sensor, we show that XA triggers a rapid rise in cytosolic calcium specifically in gametocytes that is essential for their differentiation into gametes. A member of a family of plant-like calcium dependent protein kinases, CDPK4, is identified as the molecular switch that translates the XA-induced calcium signal into a cellular response by regulating cell cycle progression in the male gametocyte. CDPK4 is shown to be essential for the sexual reproduction and mosquito transmission of P. berghei. This study reveals an unexpected function for a plant-like signaling pathway in cell cycle regulation and life cycle progression of a malaria parasite.

摘要

疟原虫向蚊子的传播始于疟原虫在蚊子血餐内进行的有性生殖。一种小型蚊子分子黄尿酸(XA)可诱导特殊传播阶段的配子体分化为雄配子和雌配子。利用表达生物发光钙传感器的伯氏疟原虫菌株,我们发现XA特异性地触发了配子体细胞溶质钙的快速升高,这对其分化为配子至关重要。一种植物类钙依赖性蛋白激酶家族的成员CDPK4被确定为分子开关,它通过调节雄配子体细胞周期进程将XA诱导的钙信号转化为细胞反应。结果表明,CDPK4对伯氏疟原虫的有性生殖和向蚊子的传播至关重要。这项研究揭示了一种植物类信号通路在疟原虫细胞周期调控和生命周期进程中的意外功能。

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