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麦芽糖降解方法:来自KIBGE-IB4的麦芽糖酶的催化行为优化及稳定性概况

Maltose deterioration approach: Catalytic behavior optimization and stability profile of maltase from KIBGE-IB4.

作者信息

Nawaz Muhammad Asif, Pervez Sidra, Jamal Muhsin, Jan Tour, Khan Wali, Rauf Abdur, Aman Afsheen, Qader Shah Ali Ul

机构信息

Department of Biotechnology, Shaheed Benazir Bhutto University, Sheringal, Dir (Upper), KPK, Pakistan.

Department of Microbiology, Hazara University, Mansehra, KPK, Pakistan.

出版信息

Biotechnol Rep (Amst). 2019 Nov 12;24:e00400. doi: 10.1016/j.btre.2019.e00400. eCollection 2019 Dec.

Abstract

Maltase is an economically valuable enzyme that is used to catalyze the hydrolytic process of maltose and yields d-glucose as a product. In this study, the catalytic behavior of maltase was optimized under various physicochemical condition. Results indicated that bacterial maltase exhibited maximum catalytic activity at 45 °C and pH-6.5 after 5.0 min. It presented greater stability within 0.1 M KHPO buffer having pH-6.5 and showed 100 % activity even after 1.0 h. It retained 83.6 % and 45.0 % activity at 40 °C after 1.0 and 3.0 h, respectively. The enzyme retained 90.0 % activity at -20 °C even after 60 days. The molecular weight of enzyme was deduced to be 157.2 kDa as calculated using polyacrylamide gel electrophoresis (PAGE) and zymography. It was concluded that the characterized maltase has notable stability profile with reference to temperature, pH and other reaction conditions which anticipates its utilization in various starch and maltose hydrolyzing processes for the synthesis of glucose.

摘要

麦芽糖酶是一种具有经济价值的酶,用于催化麦芽糖的水解过程,产物为d-葡萄糖。在本研究中,在各种物理化学条件下对麦芽糖酶的催化行为进行了优化。结果表明,细菌麦芽糖酶在45°C和pH-6.5条件下反应5.0分钟后表现出最大催化活性。它在pH-6.5的0.1M KHPO缓冲液中具有更高的稳定性,即使在1.0小时后仍显示100%的活性。在40°C下,1.0小时和3.0小时后分别保留83.6%和45.0%的活性。即使在60天后,该酶在-20°C下仍保留90.0%的活性。使用聚丙烯酰胺凝胶电泳(PAGE)和酶谱法计算得出该酶的分子量为157.2 kDa。得出的结论是,所表征的麦芽糖酶在温度、pH值和其他反应条件方面具有显著的稳定性,这预示着它可用于各种淀粉和麦芽糖水解过程以合成葡萄糖。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b4b4/6881636/cf74eefcaf4c/gr1.jpg

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