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11S Storage Globulin from Pumpkin Seeds: Regularities of Proteolysis by Papain

机译:南瓜籽中的11S储存球蛋白:木瓜蛋白酶的蛋白水解规律

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摘要

Limited proteolysis of the a- and p-chains and deep cleavage of the αβ-subunits by the cooperative (one-by-one) mechanism was observed in the course of papain hydrolysis of cucurbitin, an 11S storage globulin from seeds of the pumpkin Cucurbita maxima. An independent analysis of the kinetics of the limited and cooperative proteolyses revealed that the reaction occurs in two successive steps. In the first step, limited proteolysis consisting of detachments of short terminal peptides from the α- and β-chains was observed. The cooperative proteolysis, which occurs as a pseudo-first order reaction, started at the second step. Therefore, the limited proteolysis at the first step plays a regulatory role, impacting the rate of deep degradation of cucurbitin molecules by the cooperative mechanism. Structural alterations of cucurbitin induced by limited proteolysis are suggested to generate its susceptibility to cooperative proteolysis. These alterations are tentatively discussed on the basis of the tertiary structure of the cucurbitin subunit pdb|2EVX in comparison with previously obtained data on features of degradation of soybean US globulin hydrolyzed by papain.
机译:在木瓜蛋白酶水解南瓜素中发现了α-和p-链的有限蛋白水解以及通过合作(一对一)机制的αβ-亚基的深度裂解,南瓜素是南瓜南瓜籽的11S储存球蛋白。最大值。对有限和协同蛋白水解动力学的独立分析表明,该反应发生在两个连续的步骤中。第一步,观察到有限的蛋白水解作用,其中包括短末端肽从α和β链上的分离。协同蛋白水解以拟一级反应发生,从第二步开始。因此,第一步的有限蛋白水解起调节作用,通过协同机制影响葫芦素分子的深度降解速率。建议通过有限的蛋白水解作用诱导葫芦素的结构改变,以产生其对协同蛋白水解的敏感性。与以前获得的有关木瓜蛋白酶水解的大豆US球蛋白降解特性的数据相比,基于葫芦素亚基pdb | 2EVX的三级结构,初步讨论了这些变化。

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