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首页> 外文期刊>Pathogens and disease[electronic] >Plasmodium falciparum protein 'PfJ23' hosts distinct binding sites for major virulence factor 'PfEMP1' and Maurer's cleft marker 'PfSBP1'
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Plasmodium falciparum protein 'PfJ23' hosts distinct binding sites for major virulence factor 'PfEMP1' and Maurer's cleft marker 'PfSBP1'

机译:恶性疟原虫蛋白PfJ23主机独特的结合位点的主要毒力因子“PfEMP1”和毛雷尔裂的标记“PfSBP1”

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摘要

Plasmodium falciparum (Pf) proteins exported to infected erythrocytes are key effectors of malaria pathogenesis. These include the PfEMP1 (Pf erythrocyte membrane protein 1) protein family that affects malaria-related mortality through cytoadhesion and parasite immune evasion. Parasites also induce membranous structures called Maurer's clefts (MC) in infected erythrocytes to compensate the lack of host protein synthetic and export machinery. PfEMP1 export is mediated by a myriad of proteins including Pf skeleton binding protein 1 (PfSBP1) and PF70, a hypothetical 16 family member. Here, we aim to understand the function of the only other exported PEXEL-positive hyp16 member 'PfJ23'. Our in vitro and in silico data suggest this protein to be mostly alpha-helical while displaying different oligomeric forms under reducing and non-reducing conditions. We show coherent expression, partial co-localization and direct interaction of purified PfSBP1 with recombinant and native PfJ23. Recombinant and parasite-expressed PfJ23 also bind to the cytoplasmic tail of PfEMP1, and they seem to partly co-localize during parasite development. Both novel binding partners interact simultaneously with PfJ23 in vitro to form a complex. Our results suggest a probable role for PfJ23 in export of PEXEL-negative proteins like PfSBP1 and PfEMP1, furthering our understanding of malaria biology.
机译:恶性疟原虫(Pf)蛋白出口被感染的红细胞效应器的关键疟疾发病机理。(Pf红血球膜蛋白1)蛋白质家庭影响疟疾有关的死亡率通过cytoadhesion和寄生虫免疫逃避。寄生虫也诱导膜性结构叫毛雷尔结晶(MC)的感染红细胞补偿缺乏主机蛋白质合成和出口机器。出口是由大量的蛋白质包括Pf骨架结合蛋白1 (PfSBP1)和假想PF70 16个家庭成员。我们的目标是理解的功能其他出口PEXEL-positive hyp16成员“PfJ23”。这种蛋白质主要是α螺旋显示不同的低聚物的形式减少和非还条件。连贯的表达,部分co-localization和纯化PfSBP1的直接交互重组和本地PfJ23。parasite-expressed PfJ23也绑定到胞质尾PfEMP1,他们似乎部分硝唑在寄生虫的发展。这两个小说绑定合作伙伴交互同时PfJ23体外形成复杂。PfJ23出口PEXEL-negative蛋白质PfSBP1 PfEMP1,推进我们的理解疟疾的生物学。

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