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首页> 外文期刊>The Biochemical Journal >Pyroglutamyl peptidase type I from Trypanosoma brucei: a new virulence factor from African trypanosomes that de-blocks regulatory peptides in the plasma of infected hosts.
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Pyroglutamyl peptidase type I from Trypanosoma brucei: a new virulence factor from African trypanosomes that de-blocks regulatory peptides in the plasma of infected hosts.

机译:来自布鲁氏锥虫的I型焦谷氨酰肽酶:一种来自非洲锥虫的新毒力因子,可阻断受感染宿主血浆中的调节肽。

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摘要

Peptidases of parasitic protozoans are emerging as novel virulence factors and therapeutic targets in parasitic infections. A trypanosome-derived aminopeptidase that exclusively hydrolysed substrates with Glp (pyroglutamic acid) in P1 was purified 9248-fold from the plasma of rats infected with Trypanosoma brucei brucei. The enzyme responsible was cloned from a T. brucei brucei genomic DNA library and identified as type I PGP (pyroglutamyl peptidase), belonging to the C15 family of cysteine peptidases. We showed that PGP is expressed in all life cycle stages of T. brucei brucei and is expressed in four other blood-stream-form African trypanosomes. Trypanosome PGP was optimally active and stable at bloodstream pH, and was insensitive to host plasma cysteine peptidase inhibitors. Native purified and recombinant hyper-expressed trypanosome PGP removed the N-terminal Glp blocking groups from TRH (thyrotrophin-releasing hormone) and GnRH (gonadotropin-releasing hormone) with a k(cat)/K(m) value of 0.5 and 0.1 s(-1) x microM(-1) respectively. The half-life of TRH and GnRH was dramatically reduced in the plasma of trypanosome-infected rats, both in vitro and in vivo. Employing an activity-neutralizing anti-trypanosome PGP antibody, and pyroglutamyl diazomethyl ketone, a specific inhibitor of type I PGP, we demonstrated that trypanosome PGP is entirely responsible for the reduced plasma half-life of TRH, and partially responsible for the reduced plasma half-life of GnRH in a rodent model of African trypanosomiasis. The abnormal degradation of TRH and GnRH, and perhaps other neuropeptides N-terminally blocked with a pyroglutamyl moiety, by trypanosome PGP, may contribute to some of the endocrine lesions observed in African trypanosomiasis.
机译:寄生虫原生动物的肽酶正在作为新型毒力因子和寄生虫感染的治疗靶标出现。从布鲁氏锥虫感染的大鼠血浆中纯化9248倍纯化了锥虫来源的氨肽酶,该酶专门用P1中的Glp(焦谷氨酸)水解底物。从布鲁氏布鲁氏菌基因组DNA文库中克隆出负责的酶,并将其鉴定为I型PGP(焦谷氨酰肽酶),属于半胱氨酸肽酶C15家族。我们证明PGP在布鲁氏布鲁氏菌的所有生命周期阶段均有表达,并在其他四种血流形式的非洲锥虫中表达。锥虫PGP在血液pH值下具有最佳活性和稳定性,并且对宿主血浆半胱氨酸肽酶抑制剂不敏感。天然纯化和重组的过表达锥虫PGP以ak(cat)/ K(m)值分别为0.5和0.1 s(TR)(促甲状腺激素释放激素)和GnRH(促性腺激素释放激素)去除了N端Glp封闭基团。 -1)x microM(-1)。在体外和体内,锥虫体感染大鼠血浆中TRH和GnRH的半衰期均显着降低。使用一种中和活性的抗锥虫PGP抗体和I型PGP的特异性抑制剂焦谷氨酰重氮甲基酮,我们证明锥虫PGP完全负责TRH的血浆半衰期降低,而部分负责血浆半衰期的降低锥虫病啮齿动物模型中GnRH的寿命锥虫体PGP可能会导致TRH和GnRH以及N-端被焦谷氨酰基部分阻断的其他神经肽的异常降解,这可能是非洲锥虫病中观察到的某些内分泌损伤的原因。

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