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肾素等电形式与肾素糖型之间的关系。

The relationship between renin isoelectric forms and renin glycoforms.

作者信息

Katz S A, Opsahl J A, Abraham P A, Gardner M J

机构信息

Division of Nephrology, Hennepin County Medical Center, Minneapolis 55415.

出版信息

Am J Physiol. 1994 Jul;267(1 Pt 2):R244-52. doi: 10.1152/ajpregu.1994.267.1.R244.

Abstract

Active renin can be separated into multiple isoelectric forms using shallow gradient isoelectric focusing and into multiple glycoforms using concanavalin A (Con A) affinity chromatography. The relationship between renin isoelectric forms and glycoforms has not been previously determined. In this study, each of three renin Con A glycoforms from rat kidney was composed of significantly different proportions of six renin isoelectric forms; glycoforms with the greatest affinity for Con A contained proportionally less of the acidic isoelectric forms than those with the least affinity for Con A. A set of compartmental models accurately predicted previously measured differential plasma clearance rates of the three renin glycoforms based on their corresponding isoelectric form proportions. We conclude that 1) each Con A renin glycoform is composed of significantly different proportions of isoelectric forms, and 2) the different proportions of isoelectric forms found in Con A glycoforms are sufficient to account for the differential renin plasma clearance rates demonstrated previously for renin glycoforms in the rat. These data suggest that the isoelectric and glycoform heterogeneity of active renin are, in fact, closely related and may result from variable and interrelated mannose (Con A affinity) and sialic acid (charge) attachments to renin.

摘要

使用浅梯度等电聚焦可将活性肾素分离为多种等电形式,使用伴刀豆球蛋白A(Con A)亲和层析可将其分离为多种糖型。此前尚未确定肾素等电形式与糖型之间的关系。在本研究中,来自大鼠肾脏的三种肾素Con A糖型中的每一种均由六种肾素等电形式的显著不同比例组成;与Con A亲和力最大的糖型相比与Con A亲和力最小的糖型,其酸性等电形式的比例相对较少。一组房室模型基于三种肾素糖型相应的等电形式比例,准确预测了先前测得的三种肾素糖型的不同血浆清除率。我们得出结论:1)每种Con A肾素糖型由显著不同比例的等电形式组成,并且2)在Con A糖型中发现的等电形式的不同比例足以解释先前在大鼠中证明的肾素糖型不同的肾素血浆清除率。这些数据表明,活性肾素的等电和糖型异质性实际上密切相关,可能是由于肾素上可变且相互关联的甘露糖(Con A亲和力)和唾液酸(电荷)附着所致。

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