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Plasmodium falciparum signal peptide peptidase cleaves malaria heat shock protein 101 (HSP101). Implications for gametocytogenesis

机译:疟原虫信号肽肽酶切割疟疾热休克蛋白101(HSP101)。 对配子织细胞发生的影响

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Previously we described the identification of a Plasmodium falciparum signal peptide peptidase (PfSPP) functioning at the blood stage of malaria infection. Our studies also demonstrated that mammalian SPP inhibitors prevent malaria parasite growth at the late-ring/early trophozoite stage of intra-erythrocytic development. Consistent with its role in development, we tested the hypothesis that PfSPP functions at the endoplasmic reticulum of P. falciparum where it cleaves membrane-bound signal peptides generated following the enzyme activity of signal peptidase. The localization of PfSPP to the endoplasmic reticulum was confirmed by immunofluorescence microscopy and immunogold electron microscopy. Biochemical analysis indicated the existence of monomer and dimer forms of PfSPP in the parasite lysate. A comprehensive bioinformatics screen identified several candidate PfSPP substrates in the parasite genome. Using an established transfection based in vivo luminescence assay, malaria heat shock protein 101 (HSP101) was identified as a substrate of PfSPP, and partial inhibition of PfSPP correlated with the emergence of gametocytes. This finding unveils the first known substrate of PfSPP, and provides new perspectives for the function of intra-membrane proteolysis at the erythrocyte stage of malaria parasite life cycle.
机译:以前我们描述了在疟疾感染血液阶段的疟原虫信号肽肽酶(PFSPP)的鉴定。我们的研究还表明,哺乳动物SPP抑制剂预防红细胞发育后期/早期滋养阶段的疟疾寄生虫生长。符合其在开发中的作用,我们测试了PFSPP在P. Falciparum的内质网的功能的假设,其中它切割了信号肽酶的酶活性后产生的膜结合的信号肽。通过免疫荧光显微镜和免疫电子显微镜确认PFSPP对内质网的定位。生物化学分析表明寄生虫裂解物中PFSPP的单体和二聚体形式的存在。综合生物信息筛网在寄生虫基因组中鉴定了几种候选PFSPP底物。使用基于体内发光测定的已建立的转染,疟疾热休克蛋白101(HSP101)被鉴定为PFSPP的底物,并且PFSPP的部分抑制与配子纤维的出现相关。该发现揭示了PFSPP的第一已知底物,并为疟疾寄生虫生命周期的红细胞阶段膜中膜蛋白分解的功能提供了新的透视。

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