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Extraction purification and activity of protease from the leaves ofMoringa oleifera

机译:沙枣叶片中蛋白酶的提取纯化及活性辣木

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摘要

>Background: Proteases cleave proteins, thereby providing essential amino acids for protein synthesis, and degrade misfolded and damaged proteins to maintain homeostasis. Proteases also serve as signaling molecules, therapeutic agents and find wide applications in biotechnology and pharmaceutical industry.  Plant-derived proteases are suitable for many biomedical applications due to their easy availability and activity over a wide range of pH, temperature, and substrates. Moringa oleifera Lam (Moringaceae) is a very common food plant with medicinal property and geographically distributed in tropical countries. Here, we isolate proteases from the leaves of Moringa oleifera and characterize its enzymatic activity. >Methods: Proteases were isolated from the aqueous leaf extract of Moringa oleifera by ammonium sulfate precipitation and purified by ion exchange chromatography. Subsequently, the enzyme kinetics was determined using casein as a substrate and calibrated over different pH and temperature range for maximal activity. >Results: We obtained purified fraction of the protease having a molecular weight of 51 kDa. We observed that for the maximal caseinolytic activity of the protease, a pH of 8 and temperature of 37ºC was found to be most effective. >Conclusion: The plant-derived proteolytic enzymes are finding increasing clinical and industrial applications. We could extract, purify and characterize the enzymatic activity of proteases from the leaves of Moringa oleifera. Further molecular characterization, substrate specificity and activity of the extracted protease are required for determining its suitability as a proteolytic enzyme for various applications.
机译:>背景:蛋白酶可裂解蛋白质,从而为蛋白质合成提供必需的氨基酸,并降解折叠错误和受损的蛋白质以维持体内平衡。蛋白酶还充当信号分子,治疗剂,并在生物技术和制药工业中得到广泛应用。植物来源的蛋白酶由于在广泛的pH值,温度和底物范围内易于获得和具有活性,因此适用于许多生物医学应用。辣木(辣木科)是一种非常常见的食用植物,具有药用特性,并且地理分布在热带国家。在这里,我们从辣木的叶子中分离蛋白酶,并表征其酶促活性。 >方法:通过硫酸铵沉淀从辣木含水提取物中分离出蛋白酶,并通过离子交换色谱法纯化。随后,使用酪蛋白作为底物测定酶动力学,并在不同的pH和温度范围内进行校准以实现最大活性。 >结果:我们获得了分子量为51 kDa的蛋白酶的纯化级分。我们观察到,对于蛋白酶的最大酪蛋白水解活性,发现pH为8和温度为37ºC最为有效。 >结论:植物来源的蛋白水解酶在临床和工业上的应用日益广泛。我们可以从辣木的叶子中提取,纯化和表征蛋白酶的酶活性。为了确定其作为各种用途的蛋白水解酶的适用性,还需要进一步的分子表征,底物特异性和提取的蛋白酶的活性。

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