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蔗糖酶-α-糊精酶前体向成熟亚基的插入后加工:胰蛋白酶的多步切割

Postinsertional processing of sucrase-alpha-dextrinase precursor to authentic subunits: multiple step cleavage by trypsin.

作者信息

Shapiro G L, Bulow S D, Conklin K A, Scheving L A, Gray G M

机构信息

Department of Medicine, Stanford University School of Medicine, California 94305.

出版信息

Am J Physiol. 1991 Nov;261(5 Pt 1):G847-57. doi: 10.1152/ajpgi.1991.261.5.G847.

Abstract

Sucrase-alpha-dextrinase, a hybrid digestive carbohydrase of the intestinal brush border, is initially synthesized and transported to the surface membrane as a single-chain glycoprotein, P, which is then cleaved to alpha- and beta-subunits, presumably by one or more pancreatic proteases. However, efforts to convert P under controlled conditions to authentic alpha and beta have been unsuccessful. Sucrase-dextrinase immunoprecipitates from rats intraintestinally labeled with [3H]leucine or [35S]methionine without presence of biliary-pancreatic secretions revealed only the 230-kDa P precursor. Restoration of intestinal flow converted the brush border P to the alpha- (140 kDa) and beta- (125 kDa) subunits. Biliary plus pancreatic secretions facilitated this postinsertional cleavage, but bile alone played no role in conversion. When isolated brush borders, prelabeled in vivo, were exposed to a mixture of pancreatic proteases at physiological concentrations, P was converted to authentic alpha and beta, but only trypsin was responsible for the conversion. Kinetic analysis in prelabeled isolated brush-border vesicles revealed the appearance of several intermediate species (205-145 kDa) produced either by endogenous membrane proteases or by trypsin itself. Reconstituted duodenal luminal contents yielded a fragmentation pattern identical to that produced by trypsin alone. Trypsin was necessary and sufficient for processing of the intermediate precursors to the final authentic alpha- and beta-subunits. Based on the alpha- to beta radioactivity ratio and the known amino acid composition of the subunits, differential cleavage occurred with relatively greater production of the beta-subunit (alpha-to-beta molar ratio = 0.77). The conversion of P to the alpha- and beta-units, rather than occurring in a single step after membrane insertion, is differentially catalyzed by trypsin trimming to unequal amounts of the subunits involving a complex series of cleavage steps.

摘要

蔗糖酶 - α - 糊精酶是一种肠道刷状缘的混合消化碳水化合物酶,最初作为单链糖蛋白P合成并转运至表面膜,随后可能被一种或多种胰蛋白酶切割成α和β亚基。然而,在受控条件下将P转化为真正的α和β亚基的尝试均未成功。在没有胆胰分泌物的情况下,用[³H]亮氨酸或[³⁵S]甲硫氨酸对大鼠进行肠道内标记后,蔗糖酶 - 糊精酶免疫沉淀物仅显示出230 kDa的P前体。肠道血流的恢复将刷状缘P转化为α亚基(140 kDa)和β亚基(125 kDa)。胆汁加胰分泌物促进了这种插入后切割,但单独的胆汁在转化过程中不起作用。当体内预先标记的分离刷状缘暴露于生理浓度的胰蛋白酶混合物时,P被转化为真正的α和β亚基,但只有胰蛋白酶负责这种转化。对预先标记的分离刷状缘小泡的动力学分析显示出现了几种中间产物(205 - 145 kDa),这些产物是由内源性膜蛋白酶或胰蛋白酶本身产生的。重建的十二指肠腔内容物产生的片段化模式与仅由胰蛋白酶产生的模式相同。胰蛋白酶对于将中间前体加工成最终真正的α和β亚基是必要且充分的。基于α与β放射性比率以及亚基已知的氨基酸组成,发生了差异切割,β亚基的产生相对较多(α与β摩尔比 = 0.77)。P向α和β亚基的转化并非在膜插入后一步完成,而是由胰蛋白酶修剪以不同量催化产生不同亚基,涉及一系列复杂的切割步骤。

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