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人肠道蔗糖酶-异麦芽糖酶。游离蔗糖酶和异麦芽糖酶的鉴定以及杂合体裂解为活性不同的亚基。

Human intestinal sucrase-isomaltase. Identification of free sucrase and isomaltase and cleavage of the hybrid into active distinct subunits.

作者信息

Conklin K A, Yamashiro K M, Gray G M

出版信息

J Biol Chem. 1975 Aug 10;250(15):5735-41.

PMID:807575
Abstract

Sucrase-isomaltase complex and its functional subunits have been identified in homogenates of human small intestinal mucosa by use of Sephadex G-200 (superfine) chromatography aided by affinity of the isomaltase moiety for the dextran gel. The isomaltase subunit binds strongly to the gel at 4 degrees, and is eluted only after 2 column volumes; earlier recovery as a sharp peak can be achieved by raising column temperature to 37 degrees after elution of other proteins. Bio-Gel P-300 chromatography, density gradient, and equilibrium centrifugation demonstrated that the sucrase subunit (Stokes radius = 45 A, frictional ratio = 1.32, s20,w = 6.9, MW = 130,000) and the isomaltase subunit (Stokes radius = 45 A, frictional ratio = 1.30, s20,w = 6.6, MW = 120,000) are similar but unequal in size. The sucrase-isomaltase complex (Stokes radius = 70 A, frictional ratio = 1.61, s20,w = 9.8, MW = 280,000), appears to be an elongated hybrid molecule that is less symmetrical than either of itt subunits. Apparent Km and pH activity curves were indistinguishable for each enzyme whether present in the hybrid or in the free state. The sucrase-isomaltase complex, accounting for approximately 90 percent of native intestinal sucrase and isomaltase activities, was isolated and cleaved by 0.01 M beta-mercaptoethanol/6 M urea treatment into active sucrase and isomaltase subunits having biochemical characteristics identical with those of the free native moieties. Sodium dodecyl sulfate acrylamide gell electrophoresis of the complex also produced subunits having molecular weights very close to those for the active free sucrase and isomaltase moieties, indicating that each alpha-glucosidase appears to consist of a single polypeptide chain. Immunization of rabbits with pure sucrase-isomaltase complex yielded a monospecific precipitating antibody that reacted with the hybrid and the sucrase subunit, but had minimal affinity for the isomaltase subunit, providing further evidence that the sucrase-isomaltase molecule is a hybrid consisting of two distinct alpha-glucosidases.

摘要

利用异麦芽糖酶部分对葡聚糖凝胶的亲和力,通过Sephadex G - 200(超细)色谱法在人小肠黏膜匀浆中鉴定出蔗糖酶 - 异麦芽糖酶复合物及其功能亚基。异麦芽糖酶亚基在4℃时与凝胶紧密结合,仅在2个柱体积后才被洗脱;在其他蛋白质洗脱后将柱温升至37℃,可较早以尖锐峰的形式回收。Bio - Gel P - 300色谱法、密度梯度法和平衡离心法表明,蔗糖酶亚基(斯托克斯半径 = 45 Å,摩擦系数 = 1.32,s20,w = 6.9,分子量 = 130,000)和异麦芽糖酶亚基(斯托克斯半径 = 45 Å,摩擦系数 = 1.30,s20,w = 6.6,分子量 = 120,000)大小相似但不相等。蔗糖酶 - 异麦芽糖酶复合物(斯托克斯半径 = 70 Å,摩擦系数 = 1.61,s20,w = 9.8,分子量 = 280,000)似乎是一个细长的杂合分子,其对称性低于其任何一个亚基。无论以杂合状态还是游离状态存在,每种酶的表观Km和pH活性曲线都无法区分。占天然肠道蔗糖酶和异麦芽糖酶活性约90%的蔗糖酶 - 异麦芽糖酶复合物,经0.01 Mβ - 巯基乙醇/6 M尿素处理后被分离并裂解为具有与游离天然部分相同生化特性的活性蔗糖酶和异麦芽糖酶亚基。该复合物的十二烷基硫酸钠聚丙烯酰胺凝胶电泳也产生了分子量与活性游离蔗糖酶和异麦芽糖酶部分非常接近的亚基,表明每种α - 葡萄糖苷酶似乎由一条单一的多肽链组成。用纯蔗糖酶 - 异麦芽糖酶复合物免疫兔子产生了一种单特异性沉淀抗体,该抗体与杂合分子和蔗糖酶亚基反应,但对异麦芽糖酶亚基的亲和力最小,这进一步证明蔗糖酶 - 异麦芽糖酶分子是由两种不同的α - 葡萄糖苷酶组成的杂合分子。

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