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Targeted Deletion of a Plasmodium Site-2 Protease Impairs Life Cycle Progression in the Mammalian Host

机译:有针对性地删除疟原虫Site-2蛋白酶会损害哺乳动物宿主的生命周期进程。

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摘要

Site-2 proteases (S2P) belong to the M50 family of metalloproteases, which typically perform essential roles by mediating activation of membrane–bound transcription factors through regulated intramembrane proteolysis (RIP). Protease-dependent liberation of dormant transcription factors triggers diverse cellular responses, such as sterol regulation, Notch signalling and the unfolded protein response. Plasmodium parasites rely on regulated proteolysis for controlling essential pathways throughout the life cycle. In this study we examine the Plasmodium-encoded S2P in a murine malaria model and show that it is expressed in all stages of Plasmodium development. Localisation studies by endogenous gene tagging revealed that in all invasive stages the protein is in close proximity to the nucleus. Ablation of PbS2P by reverse genetics leads to reduced growth rates during liver and blood infection and, hence, virulence attenuation. Strikingly, absence of PbS2P was compatible with parasite life cycle progression in the mosquito and mammalian hosts under physiological conditions, suggesting redundant or dispensable roles in vivo.
机译:Site-2蛋白酶(S2P)属于M50金属蛋白酶家族,通常通过调节膜内蛋白水解(RIP)介导膜结合转录因子的激活而发挥重要作用。蛋白酶依赖的休眠转录因子的释放触发了多种细胞应答,例如固醇调节,Notch信号传导和未折叠的蛋白质应答。疟原虫寄生虫依赖调节的蛋白水解来控制整个生命周期中的基本途径。在这项研究中,我们在鼠类疟疾模型中检查了疟原虫编码的S2P,并表明它在疟原虫发育的所有阶段均表达。通过内源基因标记进行的定位研究表明,在所有侵入阶段,蛋白质都非常靠近细胞核。反向遗传学消融PbS2P会导致肝脏和血液感染过程中生长速率降低,从而降低毒力。令人惊讶的是,在生理条件下,PbS2P的缺失与蚊子和哺乳动物宿主中的寄生虫生命周期进程兼容,表明其在体内具有多余或可有可无的作用。

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