Bushell Ellen S C, Ecker Andrea, Schlegelmilch Timm, Goulding David, Dougan Gordon, Sinden Robert E, Christophides George K, Kafatos Fotis C, Vlachou Dina
Department of Life Sciences, Imperial College London, London, UK.
PLoS Pathog. 2009 Aug;5(8):e1000539. doi: 10.1371/journal.ppat.1000539. Epub 2009 Aug 7.
Malaria parasites must undergo sexual and sporogonic development in mosquitoes before they can infect their vertebrate hosts. We report the discovery and characterization of MISFIT, the first protein with paternal effect on the development of the rodent malaria parasite Plasmodium berghei in Anopheles mosquitoes. MISFIT is expressed in male gametocytes and localizes to the nuclei of male gametocytes, zygotes and ookinetes. Gene disruption results in mutant ookinetes with reduced genome content, microneme defects and altered transcriptional profiles of putative cell cycle regulators, which yet successfully invade the mosquito midgut. However, developmental arrest ensues during the ookinete transformation to oocysts leading to malaria transmission blockade. Genetic crosses between misfit mutant parasites and parasites that are either male or female gamete deficient reveal a strict requirement for a male misfit allele. MISFIT belongs to the family of formin-like proteins, which are known regulators of the dynamic remodeling of actin and microtubule networks. Our data identify the ookinete-to-oocyst transition as a critical cell cycle checkpoint in Plasmodium development and lead us to hypothesize that MISFIT may be a regulator of cell cycle progression. This study offers a new perspective for understanding the male contribution to malaria parasite development in the mosquito vector.
疟原虫必须在蚊子体内经历有性生殖和孢子生殖发育,才能感染其脊椎动物宿主。我们报告了MISFIT的发现和特征,它是首个对按蚊体内啮齿类疟原虫伯氏疟原虫发育具有父本效应的蛋白质。MISFIT在雄配子体中表达,并定位于雄配子体、合子和动合子的细胞核。基因破坏导致突变动合子的基因组含量减少、微线体缺陷以及假定的细胞周期调节因子的转录谱改变,然而这些突变动合子仍能成功侵入蚊子中肠。不过,在动合子转化为卵囊的过程中会出现发育停滞,导致疟疾传播阻断。misfit突变寄生虫与雄配子或雌配子缺陷的寄生虫之间的遗传杂交表明,严格需要一个雄性misfit等位基因。MISFIT属于formin样蛋白家族,该家族是已知的肌动蛋白和微管网络动态重塑的调节因子。我们的数据确定动合子到卵囊的转变是疟原虫发育中的一个关键细胞周期检查点,并使我们推测MISFIT可能是细胞周期进程的调节因子。这项研究为理解雄性对蚊媒中疟原虫发育的贡献提供了新的视角。