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首页> 外文期刊>Microbial Pathogenesis >Induction of human host cell apoptosis by Trichomonas vaginalis cysteine proteases is modulated by parasite exposure to iron
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Induction of human host cell apoptosis by Trichomonas vaginalis cysteine proteases is modulated by parasite exposure to iron

机译:阴道毛滴虫半胱氨酸蛋白酶对人宿主细胞凋亡的诱导受寄生虫暴露于铁的调节

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摘要

Trichomonas vaginalis is an understudied parasitic organism whose mechanisms of pathogenesis remain unclear. The adherence to host cells, the induction of host cell cytotoxicity and protease activity are all, however, thought to be contributing factors towards the development of the disease. T. vaginalis CP30 is an extracellular fraction containing four cysteine proteases, CP2, CP3, CP4 and CPT that induce apoptosis in primary human vaginal epithelial cells (HVECs) [Sommer U, Costello CE, Hayes GR, Beach DH, Gilbert RO, Lucas JJ, Singh BN. Identification of Trichomonas vaginalis cysteine proteases that induce apoptosis in human vaginal epithelial cells. J Biol Chem 2005; 280: 23853-60]. We now show that CP30, and the induction of HVEC apoptosis are modulated by iron availability in the parasite growth medium. Growth of parasites under high iron conditions results in a decrease in levels of CP30 found in an extracellular soluble fraction (SF), a concomitant decline in protease activity, and a decreased ability of SF to induce host cell death. Conversely, iron restriction leads to an increase in CP30 levels, an increase in CP30 protease activity, and an increased ability to induce HVEC cell death. Iron-loaded lactoferrin, but not transferrin is an effective iron source for parasites. We hypothesize that CP30 induction of host cell apoptosis is crucial for the development of a persistent infection, and that iron plays a determining role in parasite pathogenesis.
机译:阴道毛滴虫是一种未被充分研究的寄生生物,其发病机理仍不清楚。然而,对宿主细胞的粘附,对宿主细胞的细胞毒性的诱导和蛋白酶活性的诱导都被认为是导致疾病发展的因素。阴道锥虫CP30是一种细胞外级分,包含四种半胱氨酸蛋白酶CP2,CP3,CP4和CPT,可诱导人原代阴道上皮细胞(HVEC)凋亡[Sommer U,Costello CE,Hayes GR,Beach DH,Gilbert RO,Lucas JJ ,辛格(Singh BN)。鉴定可诱导人阴道上皮细胞凋亡的阴道毛滴虫半胱氨酸蛋白酶。生物化学杂志2005; 280:23853-60]。现在我们显示,CP30和HVEC凋亡的诱导是由寄生虫生长培养基中的铁利用度调节的。高铁条件下寄生虫的生长导致细胞外可溶性级分(SF)中CP30水平的降低,蛋白酶活性的同时下降以及SF诱导宿主细胞死亡的能力下降。相反,铁限制导致CP30水平增加,CP30蛋白酶活性增加以及诱导HVEC细胞死亡的能力增强。铁载乳铁蛋白而不是转铁蛋白是寄生虫的有效铁源。我们假设,CP30诱导宿主细胞凋亡对于持续感染的发展至关重要,并且铁在寄生虫发病机理中起决定性作用。

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