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Activation of bean (Phaseolus vulgaris) alpha-amylase inhibitor requires proteolytic processing of the proprotein.

机译:豆类(菜豆)α-淀粉酶抑制剂的激活需要对蛋白进行蛋白水解处理。

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摘要

Seeds of the common bean (Phaseolus vulgaris) contain a plant defense protein that inhibits the alpha-amylases of mammals and insects. This alpha-amylase inhibitor (alpha AI) is synthesized as a proprotein on the endoplasmic reticulum and is proteolytically processed after arrival in the protein storage vacuoles to polypeptides of relative molecular weight (M(r)) 15,000 to 18,000. We report two types of evidence that proteolytic processing is linked to activation of the inhibitory activity. First, by surveying seed extracts of wild accessions of P. vulgaris and other species in the genus Phaseolus, we found that antibodies to alpha AI recognize large (M(r) 30,000-35,000) polypeptides as well as typical alpha AI processing products (M(r) 15,000-18,000). Alpha AI activity was found in all extracts that had the typical alpha AI processed polypeptides, but was absent from seed extracts that lacked such polypeptides. Second, we made a mutant alpha AI in which asparagine-77 is changed to aspartic acid-77. This mutation slows down the proteolytic processing of pro-alpha AI when the gene is expressed in tobacco. When pro-alpha AI was separated from mature alpha AI by gel filtration, pro-alpha AI was found not to have alpha-amylase inhibitory activity. We interpret these results to mean that formation of the active inhibitor is causally related to proteolytic processing of the proprotein. We suggest that the polypeptide cleavage removes a conformational constraint on the precursor to produce the biochemically active molecule.
机译:普通豆(菜豆)的种子含有一种植物防御蛋白,可以抑制哺乳动物和昆虫的α-淀粉酶。该α-淀粉酶抑制剂(αAI)作为内质网上的前蛋白合成,到达蛋白质存储液泡后,被蛋白水解加工成相对分子量(M(r))15,000至18,000的多肽。我们报告两种类型的证据表明蛋白水解过程与抑制活性的激活有关。首先,通过调查菜豆属和普通菜属的野生种的野生种的种子提取物,我们发现抗αAI的抗体识别大的(M(r)30,000-35,000)多肽以及典型的αAI加工产品(M (r)15,000-18,000)。在具有典型的αAI处理过的多肽的所有提取物中均发现了αAI活性,但缺乏此类多肽的种子提取物中却没有这种活性。其次,我们制备了一个突变型αAI,其中天冬酰胺77变为天冬氨酸77。当基因在烟草中表达时,这种突变减慢了原αAI的蛋白水解过程。当通过凝胶过滤将原α-AI与成熟α-AI分离时,发现原α-AI不具有α-淀粉酶抑制活性。我们将这些结果解释为是指活性抑制剂的形成与原蛋白的蛋白水解过程有因果关系。我们建议多肽切割消除了对前体的构象约束,以产生生化活性分子。

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