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首页> 外文期刊>The international journal of biochemistry and cell biology >A major cathepsin B protease from the liver fluke Fasciola hepatica has atypical active site features and a potential role in the digestive tract of newly excysted juvenile parasites.
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A major cathepsin B protease from the liver fluke Fasciola hepatica has atypical active site features and a potential role in the digestive tract of newly excysted juvenile parasites.

机译:来自肝吸虫Fasciola hepatica的主要组织蛋白酶B蛋白酶具有非典型的活性位点特征,并且在新近被囊封的幼虫的消化道中具有潜在作用。

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摘要

The newly excysted juvenile (NEJ) stage of the Fasciola hepatica lifecycle occurs just prior to invasion into the wall of the gut of the host, rendering it an important target for drug development. The cathepsin B enzymes from NEJ flukes have recently been demonstrated to be crucial to invasion and migration by the parasite. Here we characterize one of the cathepsin B enzymes (recombinant FhcatB1) from NEJ flukes. FhcatB1 has biochemical properties distinct from mammalian cathepsin B enzymes, with an atypical preference for Ile over Leu or Arg residues at the P(2) substrate position and an inability to act as an exopeptidase. FhcatB1 was active across a broad pH range (optimal activity at pH 5.5-7.0) and resistant to inhibition by cystatin family inhibitors from sheep and humans, suggesting that this enzyme would be able to function in extracellular environments in its mammalian hosts. It appears, however, that the FhcatB1 protease functions largely as a digestive enzyme in the gut of the parasite, due to the localization of a specific, fluorescently labeled inhibitor with an Ile at the P(2) position. Molecular modelling and dynamics were used to predict the basis for the unusual substrate specificity: a P(2) Ile residue positions the substrate optimally for interaction with catalytic residues of the enzyme, and the enzyme lacks an occluding loop His residue crucial for exopeptidase activity. The unique features of the enzyme, particularly with regard to its specificity and likely importance to a vital stage of the parasite's life cycle, make it an excellent target for therapeutic inhibitors or vaccination.
机译:Fasciola hepatica肝细胞生命周期的新近灭绝的少年(NEJ)阶段正好在侵入宿主肠壁之前发生,使其成为药物开发的重要目标。最近已证明来自NEJ吸虫的组织蛋白酶B酶对于寄生虫的入侵和迁移至关重要。在这里,我们表征了来自NEJ吸虫的组织蛋白酶B酶之一(重组FhcatB1)。 FhcatB1具有不同于哺乳动物组织蛋白酶B酶的生化特性,在P(2)底物位置的Ile优先于Leu或Arg残基,并且不能充当外肽酶。 FhcatB1在很宽的pH范围内都具有活性(在pH 5.5-7.0时具有最佳活性),并且对来自绵羊和人类的胱抑素家族抑制剂的抑制作用具有抵抗力,这表明该酶将能够在其哺乳动物宿主的细胞外环境中发挥作用。但是,由于特定的,荧光标记的抑制剂在P(2)位置处带有Ile,FhcatB1蛋白酶似乎在寄生虫的肠道中主要起消化酶的作用。分子建模和动力学用于预测异常底物特异性的基础:P(2)Ile残基可最佳定位底物,使其与酶的催化残基相互作用,并且该酶缺少对环外肽酶活性至关重要的闭环His残基。该酶的独特功能,尤其是其特异性以及对寄生虫生命周期至关重要阶段的重要性,使其成为治疗性抑制剂或疫苗接种的极佳靶标。

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