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Two cold-induced family 19 glycosyl hydrolases from cherimoya (Annona cherimola) fruit: An antifungal chitinase and a cold-adapted chitinase

机译:毛叶番荔枝果实(Annona cherimola)果实中的两种冷诱导家族19糖基水解酶:抗真菌几丁质酶和冷适应性几丁质酶

摘要

Two cold-induced chitinases were isolated and purified from the mesocarp cherimoyas (Annona cherimola Mill.) and they were characterised as acidic endochitinases with a Mr of 24.79 and 47.77 kDa (AChi24 and AChi48, respectively), both family 19 glycosyl hydrolases. These purified chitinases differed significantly in their biochemical and biophysical properties. While both enzymes had similar optimal acidic pH values, AChi24 was enzymatically active and stable at alkaline pH values, as well as displaying an optimal temperature of 45 °C and moderate thermostability. Kinetic studies revealed a great catalytic efficiency of AChi24 for oligomeric and polymeric substrates. Conversely, AChi48 hydrolysis showed positive co-operativity that was associated to a mixture of different functional oligomeric states through weak transient protein interactions. The rise in the AChi48 kcat at increasing enzyme concentrations provided evidence of its oligomerisation. AChi48 chitinase was active and stable in a broad acidic pH range, and while it was relatively labile as temperatures increased, with an optimal temperature of 35 °C, it retained about 50% of its maximal activity from 5 to 50 °C. Thermodynamic characterisation reflected the high kcat of AChi48 and the remarkably lower δH‡, δS‡ and δG‡ values at 5 °C compared to AChi24, indicating that the hydrolytic activity of AChi48 was less thermodependent. In vitro functional studies revealed that AChi24 had a strong antifungal defence potential against Botrytis cinerea, whereas they displayed no cryoprotective or antifreeze activity. Hence, based on biochemical, thermodynamic and functional data, this study demonstrates that two acidic endochitinases are induced at low temperatures in a subtropical fruit, and that one of them acts in an oligomeric cold-adapted manner. © 2013 Elsevier Ltd. All rights reserved.
机译:从中果皮毛叶番荔枝(Annona cherimola Mill。)中分离和纯化了两种冷诱导的几丁质酶,它们被表征为酸性内切几丁质酶,Mr为24.79和47.77 kDa(分别为AChi24和AChi48),均为家族19糖基水解酶。这些纯化的几丁质酶在其生化和生物物理特性上存在显着差异。尽管两种酶的最佳酸性pH值均相近,但AChi24具有酶促活性,在碱性pH值下稳定,并且显示45°C的最佳温度和适度的热稳定性。动力学研究表明,AChi24对低聚和聚合底物具有很高的催化效率。相反,AChi48水解显示出正的协同作用,通过弱的瞬时蛋白质相互作用与不同功能性低聚状态的混合物相关。随着酶浓度的增加,AChi48 kcat的升高提供了其低聚的证据。 AChi48几丁质酶在较宽的酸性pH范围内均具有活性和稳定性,尽管随温度升高相对不稳定,最适温度为35°C,但从5到50°C,它保留了约50%的最大活性。热力学表征反映了AChi48的高kcat值,并且在5°C时的δH‡,δS‡和δG‡值均比AChi24低得多,表明AChi48的水解活性对温度的依赖性较小。体外功能研究表明,AChi24对灰葡萄孢具有很强的抗真菌防御能力,而它们却没有冷冻保护或抗冻活性。因此,基于生化,热力学和功能数据,这项研究表明,在亚热带水果中,在低温下诱导了两种酸性内切质酶,并且其中一种以低聚冷适应的方式起作用。 ©2013 ElsevierLtd。保留所有权利。

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