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首页> 外文期刊>Brazilian Journal of Medical and Biological Research >Na,K-ATPase: a molecular target for Leptospira interrogans endotoxin
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Na,K-ATPase: a molecular target for Leptospira interrogans endotoxin

机译:Na,K-ATPase:问号钩端螺旋体内毒素的分子靶标

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摘要

On the basis of our report that a glycolipoprotein fraction (GLP) extracted from Leptospira interrogans contains a potent inhibitor of renal Na,K-ATPase, we proposed that GLP-induced inhibition of Na,K-ATPase might be the primary cellular defect in the physiopathology of leptospirosis. The present study was designed to test this hypothesis by determining whether or not 1) GLP inhibits all the isoforms of Na,K-ATPase which are expressed in the tissues affected by leptospirosis, 2) Na,K-ATPase from leptospirosis-resistant species, such as the rat, is sensitive to GLP, 3) GLP inhibits Na,K-ATPase from intact cells, and 4) GLP inhibits ouabain-sensitive H,K-ATPase. The results indicate that in the rabbit, a leptospirosis-sensitive species, GLP inhibits with similar efficiency (apparent IC50: 120-220 μg protein GLP/ml) all isoforms of Na,K-ATPase known to be expressed in target tissues for the disease. Na,K-ATPase from rat kidney displays a sensitivity to GLP similar to that of the rabbit kidney enzyme (apparent IC50: 25-80 and 50-150 μg protein GLP/ml for rat and rabbit, respectively), indicating that resistance to the disease does not result from the resistance of Na,K-ATPase to GLP. GLP also reduces ouabain-sensitive rubidium uptake in rat thick ascending limbs (pmol mm-1 min-1 ± SEM; control: 23.8 ± 1.8; GLP, 88 μg protein/ml: 8.2 ± 0.9), demonstrating that it is active in intact cells. Finally, GLP had no demonstrable effect on renal H,K-ATPase activity, even on the ouabain-sensitive form, indicating that the active principle of GLP is more specific for Na,K-ATPase than ouabain itself. Although the hypothesis remains to be demonstrated in vivo, the present findings are compatible with the putative role of GLP-induced inhibition of Na,K-ATPase as an initial mechanism in the physiopathology of leptospirosis
机译:根据我们的报告,从问号钩端螺旋体中提取的糖脂蛋白组分(GLP)含有一种有效的肾Na,K-ATPase抑制剂,我们建议GLP诱导的Na,K-ATPase抑制可能是肾小管上皮细胞的主要细胞缺陷。钩端螺旋体病的生理病理学。本研究旨在通过确定1)GLP是否抑制在受到钩端螺旋体病影响的组织中表达的Na,K-ATPase的所有同工型,2)来自抗钩端螺旋体的物种的Na,K-ATPase来检验这一假设。例如大鼠,对GLP敏感,3)GLP抑制完整细胞的Na,K-ATPase,4)GLP抑制对哇巴因敏感的H,K-ATPase。结果表明,在兔,对钩端螺旋体病敏感的物种中,GLP以相似的效率(表观IC50:120-220μg蛋白GLP / ml)抑制已知在该疾病靶组织中表达的Na,K-ATPase的所有同工型。 。来自大鼠肾脏的Na,K-ATPase对GLP的敏感性与兔肾脏酶相似(表观IC50:大鼠和兔子的表观IC50:25-80和50-150μg蛋白GLP / ml),表明对GLP的抗性该疾病不是由Na,K-ATPase对GLP的抗性引起的。 GLP还可以减少大鼠厚肢上升中哇巴因对rub的吸收(pmol mm-1 min-1±SEM;对照:23.8±1.8; GLP,88μg蛋白/ ml:8.2±0.9),表明其具有完整的活性细胞。最后,GLP对肾H,K-ATPase活性没有明显的影响,即使对哇巴因敏感的形式也没有显示作用,这表明GLP的活性成分对Na,K-ATPase的特异性高于哇巴因本身。尽管该假说尚待体内证实,但目前的发现与GLP诱导的Na,K-ATPase抑制作为钩端螺旋体病生理病理学的初始机制的假定作用相吻合。

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