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Cysteine peptidases from Phytomonas serpens: biochemical and immunological approaches.

机译:Phytomonas serpens的半胱氨酸肽酶:生化和免疫学方法。

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Phytomonas serpens, a phytoflagellate trypanosomatid, shares common antigens with Trypanosoma cruzi. In the present work, we compared the hydrolytic capability of cysteine peptidases in both trypanosomatids. Trypanosoma cruzi epimastigotes presented a 10-fold higher efficiency in hydrolyzing the cysteine peptidase substrate Z-Phe-Arg-AMC than P. serpens promastigotes. Moreover, two weak cysteine-type gelatinolytic activities were detected in P. serpens, while a strong 50-kDa cysteine peptidase was observed in T. cruzi. Cysteine peptidase activities were detected at twofold higher levels in the cytoplasmic fraction when compared with the membrane-rich or the content released from P. serpens. The cysteine peptidase secreted by P. serpens cleaved several proteinaceous substrates. Corroborating these findings, the cellular distribution of the cruzipain-like molecules in P. serpens was attested through immunocytochemistry analysis. Gold particles were observed in all cellular compartments, including the cytoplasm, plasma membrane, flagellum, flagellar membrane and flagellar pocket. Interestingly, some gold particles were visualized free in the flagellar pocket, suggesting the release of the cruzipain-like molecule. The antigenic properties of the cruzipain-like molecules of P. serpens were also analyzed. Interestingly, sera from chagasic patients recognized both cellular and extracellular antigens of P. serpens, including the cruzipain-like molecule. These results point to the use of P. serpens antigens, especially the cruzipain-like cysteine-peptidases, as an alternative vaccination approach to T. cruzi infection.
机译:锯齿疫病(Phytomonas serpens)是一种鞭毛锥虫,与克氏锥虫共有共同的抗原。在目前的工作中,我们比较了两种锥虫中半胱氨酸肽酶的水解能力。克氏锥虫锥体鞭毛虫在水解半胱氨酸肽酶底物Z-Phe-Arg-AMC方面的效率比锯齿疟原虫鞭毛体高10倍。此外,在P. serpens中检测到两个弱的半胱氨酸型明胶分解活性,而在T. cruzi中观察到了强的50 kDa半胱氨酸肽酶。与富含膜的或从假单胞菌释放的含量相比,在细胞质级分中检测到的半胱氨酸肽酶活性高出两倍。假单胞菌分泌的半胱氨酸肽酶切割了几种蛋白质底物。证实了这些发现,通过免疫细胞化学分析证实了crupzipin样分子在假单胞菌中的细胞分布。在所有细胞区室中都观察到了金颗粒,包括细胞质,质膜,鞭毛,鞭毛膜和鞭毛袋。有趣的是,在鞭毛袋中可以自由观察到一些金颗粒,这表明可以释放出类似Cruzipain的分子。还分析了锯齿假单胞菌的crupzipa样分子的抗原特性。有趣的是,来自chagasic患者的血清识别了P. serpens的细胞和细胞外抗原,包括crupzipin样分子。这些结果表明,使用锯齿假单胞菌抗原,特别是十字形素样半胱氨酸肽酶,作为克氏锥状菌感染的替代疫苗接种方法。

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