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首页> 外文期刊>Molecular and Biochemical Parasitology >Cysteine protease isoforms from Trypanosoma cruzi, cruzipain 2 and cruzain, present different substrate preference and susceptibility to inhibitors.
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Cysteine protease isoforms from Trypanosoma cruzi, cruzipain 2 and cruzain, present different substrate preference and susceptibility to inhibitors.

机译:来自克鲁斯锥虫,克鲁斯帕林2和克鲁萨因的半胱氨酸蛋白酶同工型表现出不同的底物偏好和对抑制剂的敏感性。

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摘要

Cysteine-proteinases from parasitic protozoa have been recently characterized as factors of virulence and pathogenicity in several human and veterinary diseases. In Chagas' disease, the chronic infection caused by Trypanosoma cruzi, structure-functional studies on cysteine proteases were thus far limited to the parasite's major isoform, a cathepsin L-like lysosomal protease designated as cruzipain, cruzain or GP57/51. Encoded by a large gene family, cruzipain is efficiently targeted by synthetic inhibitors, which prevent parasite intracellular growth and differentiation. We have previously demonstrated that the multicopy cruzipain gene family includes polymorphic sequences, which could encode functionally different isoforms. We report here a comparative kinetic study between cruzain, the archetype of the cruzipain family, and an isoform, termed cruzipain 2, which is expressed preferentially by the mammalian stages of T. cruzi. Heterologous expression of the catalytic domain of cruzipain 2 in Saccharomyces cerevisae yielded an enzyme that differs markedly from cruzain with respect to pH stability, substrate specificity and sensitivity to inhibition by natural and synthetic inhibitors of cysteine proteases. We suggest that the structural-functional diversification imparted by genetic polymorphism of cruzipain genes may have contributed to T. cruzi adaptation to vertebrate hosts.
机译:来自寄生虫原生动物的半胱氨酸蛋白酶最近已被表征为几种人类和兽医疾病中的毒力和致病性因素。在恰加斯氏病中,由克鲁斯氏锥虫引起的慢性感染,对半胱氨酸蛋白酶的结构功能研究迄今仅限于该寄生虫的主要同工型,一种组织蛋白酶L样溶酶体蛋白酶,称为克鲁奇帕因,克鲁赞或GP57 / 51。 Cruzipain由一个大型基因家族编码,可被合成抑制剂有效地靶向,这些合成抑制剂可防止寄生虫细胞内生长和分化。我们以前已经证明了多拷贝Cruzipain基因家族包括多态性序列,可以编码功能不同的同工型。我们在这里报告cruzain,crupzipa家族的原型,和同种型,称为crupzipain 2,之间的比较动力学研究,后者优先由T. cruzi的哺乳动物阶段表达。在啤酒糖酵母中crupzipin 2催化域的异源表达产生的酶在pH稳定性,底物特异性和对半胱氨酸蛋白酶的天然和合成抑制剂的抑制敏感性方面与cruzain明显不同。我们建议,crupzipain基因的遗传多态性赋予的结构功能多样化可能有助于克鲁维酵母对脊椎动物宿主的适应性。

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