Kinetic and chemical evidence for the inability of oxidized alpha 1-proteinase inhibitor to protect lung elastin from elastolytic degradation.

K Beatty, N Matheson, J Travis
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引用次数: 56

Abstract

The oxidation of human alpha 1-proteinase inhibitor results in the conversion of this protein into a form which cannot protect lung elastin from degradation by elastolytic proteinases. Data indicate that this is primarily because of the lowering of the association rate between the modified inhibitor and neutrophil elastase, as well as in a change in Ki from near 10(-14) to near 10(-10)M. This is consistent with the hypothesis that oxidation of alpha 1-proteinase inhibitor in the lung by cigarette smoke results in a lowering of the protection of this organ from elastolytic degradation.

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氧化α 1蛋白酶抑制剂不能保护肺弹性蛋白免遭弹性分解降解的动力学和化学证据。
人α - 1蛋白酶抑制剂的氧化导致该蛋白转化为一种不能保护肺弹性蛋白免受弹性分解蛋白酶降解的形式。数据表明,这主要是由于改性抑制剂与中性粒细胞弹性酶之间的关联率降低,以及Ki从接近10(-14)变化到接近10(-10)M。这与肺部α 1蛋白酶抑制剂被香烟烟雾氧化导致该器官免受弹性降解的保护能力降低的假设是一致的。
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Interactions of the complex between human urinary trypsin inhibitor and human leukocyte elastase with alpha 1-proteinase inhibitor and alpha 2-macroglobulin. Gabexate mesilate (FOY) and aprotinin. A comparative study of the effects on trypsin-induced activation of the kinin and complement systems in vivo and in vitro. Aprotinin turn-over studies in dog and in man with severe acute pancreatitis. Kinetic studies on the mechanism of the penicillin amidase-catalysed synthesis of ampicillin and benzylpenicillin. [How do antibodies form? (9th Fritz Lipmann Lecture)].
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