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A new chymotrypsin-like serine protease involved in dietary protein digestion in a primitive animal, Scorpio maurus: purification and biochemical characterization

机译:一种新的胰凝乳蛋白酶样丝氨酸蛋白酶,参与原始动物蝎蝎(Scorpio maurus)的饮食蛋白质消化:纯化和生化特性

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Background Most recent works on chymotrypsins have been focused on marine animals and insects. However, no study was reported in chelicerate. Results Scorpion chymotrypsin-like protease (SCP) was purified to homogeneity from delipidated hepatopancreases. The protease NH2-terminal sequence exhibited more than 60% monoacids identity with those of insect putative peptidases. The protease displayed no sequence homology with classical proteases. From this point of view, the protease recalls the case of the scorpion lipase which displayed no sequence homology with known lipases. The scorpion amylase purified and characterized by our time, has an amino-acids sequence similar to those of mammalian amylases. The enzyme was characterized with respect its biochemical properties: it was active on a chymotrypsin substrate and had an apparent molecular mass of 25 kDa, like the classically known chymotrypsins. The dependence of the SCP activity and stability on pH and temperature was similar to that of mammalian chymotrypsin proteases. However, the SCP displayed a lower specific activity and a boarder pH activity range (from 6 to 9). Conclusion lower animal have a less evaluated digestive organ: a hepatopancreas, whereas, higher ones possess individualized pancreas and liver. A new chymotrypsin-like protease was purified for the first time from the scorpion hepatopancreas. Its biochemical characterization showed new features as compared to classical chymotrypsin-higher-animals proteases.
机译:背景技术关于胰凝乳蛋白酶的最新作品集中在海洋动物和昆虫上。但是,尚无关于螯合物的研究报道。结果将蝎胰凝乳蛋白酶样蛋白酶(SCP)从脱脂的肝胰蛋白酶中纯化至同质。蛋白酶NH 2-末端序列与昆虫推定的肽酶显示出超过60%的单酸同一性。该蛋白酶与经典蛋白酶没有序列同源性。从这一观点出发,该蛋白酶回想起蝎脂酶的情况,该蝎脂酶与已知的脂酶没有序列同源性。经过我们时代净化和表征的蝎子淀粉酶具有与哺乳动物淀粉酶相似的氨基酸序列。对该酶的生化特性进行了表征:该酶在胰凝乳蛋白酶底物上具有活性,并且具有25 kDa的表观分子量,类似于经典的胰凝乳蛋白酶。 SCP活性和稳定性对pH和温度的依赖性与哺乳动物胰凝乳蛋白酶相似。但是,SCP的比活度较低,寄宿生的pH活性范围为6至9。结论低等动物的消化器官评估较少:肝胰腺,而高等动物则具有个体化的胰腺和肝脏。首次从蝎肝胰腺中纯化出一种新的胰凝乳蛋白酶样蛋白酶。与经典的胰凝乳蛋白酶-高动物蛋白酶相比,其生化特性显示出新的特征。

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