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Cathepsin B-like and cell death in the unicellular human pathogen Leishmania

机译:组织蛋白酶B样和单细胞人类病原体利什曼原虫中的细胞死亡

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摘要

In several studies reporting cell death (CD) in lower eukaryotes and in the human protozoan parasite Leishmania, proteolytic activity was revealed using pan-caspase substrates or inhibitors such as carbobenzoxy-valyl-alanyl-aspartyl-[O-methyl]-fluoromethylketone (Z-VAD-FMK). However, most of the lower eukaryotes do not encode caspase(s) but MCA, which differs from caspase(s) in its substrate specificity and cannot be accountable for the recognition of Z-VAD-FMK. In the present study, we were interested in identifying which enzyme was capturing the Z-VAD substrate. We show that heat shock (HS) induces Leishmania CD and leads to the intracellular binding of Z-VAD-FMK. We excluded binding and inhibition of Z-VAD-FMK to Leishmania major metacaspase (LmjMCA), and identified cysteine proteinase C (LmjCPC), a cathepsin B-like (CPC) enzyme, as the Z-VAD-FMK binding enzyme. We confirmed the specific interaction of Z-VAD-FMK with CPC by showing that Z-VAD binding is absent in a Leishmania mexicana strain in which the cpc gene was deleted. We also show that parasites exposed to various stress conditions release CPC into a soluble fraction. Finally, we confirmed the role of CPC in Leishmania CD by showing that, when exposed to the oxidizing agent hydrogen peroxide (H2O2), cpc knockout parasites survived better than wild-type parasites (WT). In conclusion, this study identified CPC as the substrate of Z-VAD-FMK in Leishmania and as a potential additional executioner protease in the CD cascade of Leishmania and possibly in other lower eukaryotes.
机译:在几项报告了低等真核生物和人类原生动物寄生虫利什曼原虫中细胞死亡(CD)的研究中,使用泛半胱天冬酶底物或抑制剂,如碳苯并氧杂戊基-丙氨酰基-天冬氨酰-[O-甲基]-氟甲基酮(Z -VAD-FMK)。然而,大多数低等真核生物不编码半胱天冬酶,但编码MCA,其底物特异性不同于半胱天冬酶,不能解释Z-VAD-FMK的识别。在本研究中,我们对确定哪种酶正在捕获Z-VAD底物感兴趣。我们显示,热休克(HS)诱导利什曼原虫CD,并导致Z-VAD-FMK的细胞内结合。我们排除了Z-VAD-FMK与利什曼原虫主要metacaspase(LmjMCA)的结合和抑制作用,并确定了半胱氨酸蛋白酶C(LmjCPC),组织蛋白酶B样(CPC)酶作为Z-VAD-FMK结合酶。我们通过显示cpc基因缺失的Leishmania mexicana菌株中不存在Z-VAD结合,证实了Z-VAD-FMK与CPC的特异性相互作用。我们还表明,暴露于各种压力条件下的寄生虫将CPC释放为可溶级分。最后,我们证明了CPC在利什曼原虫CD中的作用,表明当暴露于氧化剂过氧化氢(H2O2)时,cpc敲除寄生虫比野生型寄生虫(WT)存活得更好。总之,这项研究确定CPC在利什曼原虫中是Z-VAD-FMK的底物,并且在利什曼原虫的CD级联中以及在其他低等真核生物中是潜在的附加执行蛋白酶。

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