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Importance of enolase in Giardia lamblia differentiation

机译:烯醇酶在贾丽西亚兰布里亚分化中的重要性

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摘要

The ability of Giardia to differentiate into cysts which survive in the environment and release the virulent trophozoites after ingestion in the small intestine is essential for transmission and disease. We examined the role of enolase, a glycolytic enzyme, in Giardia differentiation. The sequence of Giardia lamblia enolase (gEno) is most similar to enolases in Homo sapiens and Leishmania mexicana, and shows the conserved catalytic and metal-binding residues. We used an integration vector to stably express wild type and mutant gEno. In trophozoites, wild type gEno localized to the cell membrane, caudal flagella and cytosol. gEno is present on the wall of mature cysts, but not in encystation secretory vesicles (ESV). The expression of gEno with a deletion of residues G167-K169, or mutations H389Q/R390S significantly inhibited excystation while mutation of residue D257K had no effect. These results suggest a role for enolase in regulation of Giardia excystation.
机译:Giardia分化为在环境中生存的囊肿的囊肿的能力,在小肠中摄入后释放毒性滋养体是必不可少的传播和疾病。我们研究了烯醇酶,糖酵解酶,在贾吉亚分化中的作用。 Giardia Lamblia Enolase(Geno)的序列与Homo Sapiens和Leishmania Mexicana中的烯醇酶最相似,并且显示了保守的催化和金属结合残留物。我们使用了一体化矢量来稳定表达野生型和突变基因。在滋养体中,野生型流体局限于细胞膜,尾鞭毛和细胞溶质。 Geno存在于成熟囊肿的墙壁上,但不在心内组分泌囊泡(ESV)。随着残留物G167-K169的缺失的基因表达,或突变H389Q / R390s显着抑制了屈服,而残留物D257K的突变无效。这些结果表明了烯醇酶在治疗伽牛源性的调节中的作用。

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