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首页> 外文期刊>Molecular Microbiology >Role of the Trypanosoma brucei natural cysteine peptidase inhibitor ICP in differentiation and virulence
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Role of the Trypanosoma brucei natural cysteine peptidase inhibitor ICP in differentiation and virulence

机译:布氏锥虫天然半胱氨酸肽酶抑制剂ICP在分化和毒力中的作用

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摘要

ICP is a chagasin-family natural tight binding inhibitor of Clan CA, family C1 cysteine peptidases (CPs). We investigated the role of ICP in Trypanosoma brucei by generating bloodstream form ICP-deficient mutants (Delta icp). A threefold increase in CP activity was detected in lysates of Delta icp, which was restored to the levels in wild type parasites by re-expression of the gene in the null mutant. Delta icp displayed slower growth in culture and increased resistance to a trypanocidal synthetic CP inhibitor. More efficient exchange of the variant surface glycoprotein (VSG) to procyclin during differentiation from bloodstream to procyclic form was observed in Delta icp, a phenotype that was reversed in the presence of synthetic CP inhibitors. Furthermore, we showed that degradation of anti-VSG IgG is abolished when parasites are pretreated with synthetic CP inhibitors, and that parasites lacking ICP degrade IgG more efficiently than wild type. In addition, Delta icp reached higher parasitemia than wild type parasites in infected mice, suggesting that ICP modulates parasite infectivity. Taken together, these data suggest that CPs of T. brucei bloodstream form play a role in surface coat exchange during differentiation, in the degradation of internalized IgG and in parasite infectivity, and that their function is regulated by ICP.
机译:ICP是Clan CA(家族C1半胱氨酸肽酶(CPs))的Chagasin家族天然紧密结合抑制剂。我们通过产生ICP缺乏型突变体(Delta icp)的血流来研究ICP在布鲁氏锥虫中的作用。在Delta icp的裂解物中检测到CP活性增加了三倍,通过在无效突变体中基因的重新表达将其恢复至野生型寄生虫的水平。 Delta icp在培养中显示出较慢的生长,并且对锥虫性合成CP抑制剂的抵抗力增加。在Delta icp观察到从血流向procycle形式分化期间,变体表面糖蛋白(VSG)更有效地交换为procyclin,该表型在合成CP抑制剂存在下被逆转。此外,我们显示,当寄生虫用合成CP抑制剂预处理时,抗VSG IgG的降解将被消除,并且缺少ICP的寄生虫比野生型更有效地降解IgG。此外,在感染的小鼠中,Delta icp的寄生虫血症比野生型寄生虫更高,这表明ICP调节了寄生虫的感染性。综上所述,这些数据表明布鲁氏梭菌血流形式的CP在分化过程中在表皮交换,内在化IgG的降解和寄生虫感染性中发挥作用,并且它们的功能受ICP调节。

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