α间抑制剂:一个参与抑制草酸钙结晶的蛋白家族。

Scanning microscopy Pub Date : 1996-01-01
F Atmani, J Mizon, S R Khan
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摘要

α -间抑制剂(I α I)是存在于人血浆中的丝氨酸蛋白酶抑制剂。它的分子量约为220 kDa,由3条链组成,包括两条重链和一条轻链。这种被称为bikunin的轻链,在抑制各种酶(如胰蛋白酶和凝乳胰蛋白酶)的过程中,负责I α I的抗胰蛋白酶活性。在生理或某些病理情况下,血浆和尿液中会出现几种与α - 1有关的大分子。然而,I α I的生理作用仍不清楚。就尿石症而言,已经分离出两种与I α I相关的尿液大分子,并显示出它们是草酸钙形成的有效抑制剂。其中一种抑制剂,富尿酸蛋白(UAP),已被鉴定并被很好地表征。UAP的前18个氨基酸残基序列与bikunin相同。此外,免疫印迹分析显示UAP与I α I抗体的免疫反应呈阳性。从结石患者尿液中分离的UAP对草酸钙结晶的抑制活性低于从健康受试者尿液中提取的UAP。这表明从结石患者获得的抑制剂存在结构异常。从肾结石中提取的有机基质中含有一种与I α I抗原相关的蛋白。我们得出结论,UAP是I α I家族的成员,参与抑制草酸钙结晶,调节尿路结石的形成。
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Inter-alpha-inhibitor: a protein family involved in the inhibition of calcium oxalate crystallization.

Inter-alpha-inhibitor (I alpha I) is a serine protease inhibitor present in human plasma. It has a molecular weight of about 220 kDa which encompasses 3 chains including two heavy chains and one light chain. The light chain, known as bikunin, is responsible for the antitryptic activity of I alpha I in the inhibition of various enzymes, such as trypsin and chymotrypsin. Under physiologic or certain pathologic circumstances, several macromolecules related to I alpha I appear in plasma and urine. However, the physiologic role of I alpha I remains unclear. As far as urolithiasis is concerned, two urinary macromolecules related to I alpha I have been isolated and shown to be potent inhibitors of calcium oxalate formation. One of these inhibitors, uronic-acid-rich protein (UAP), has been identified and well characterized. The sequence of the first 18 amino acid residues of UAP is identical with that of bikunin. Furthermore, the immunoreaction between UAP and I alpha I antibody using immunoblot analysis was positive. UAP isolated from the urine of stone formers exhibited less inhibitory activity towards calcium oxalate crystallization than that derived from the urine of healthy subjects. This suggests a structural abnormality of the inhibitor obtained from stone patients. The organic matrix extracted from kidney stones contained a protein antigenically related to I alpha I. We conclude that UAP is a member of I alpha I family taking part in inhibiting calcium oxalate crystallization, and modulating the formation of stones in the urinary tract.

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