生物学杂志2024,Vol.41Issue(1) :113-119.DOI:10.3969/j.issn.2095-1736.2024.01.113

纳米花固定化蔗糖酶的研究

Study on immobilization of sucrase by nano-flower

崔诗琦 姜晓冬 王世杰 王红英 钱斯日古楞
生物学杂志2024,Vol.41Issue(1) :113-119.DOI:10.3969/j.issn.2095-1736.2024.01.113

纳米花固定化蔗糖酶的研究

Study on immobilization of sucrase by nano-flower

崔诗琦 1姜晓冬 1王世杰 1王红英 1钱斯日古楞1
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作者信息

  • 1. 大连工业大学生物工程学院,大连 116034
  • 折叠

摘要

蔗糖酶(Sucrase,EC 3.2.1.26)在工业上具有较高的经济价值,可用于分解蔗糖生成果糖和葡萄糖,现今在工业化技术上存在着蔗糖酶生产果糖方法单一、活力不易保持且难以重复利用等问题.采用共沉淀法制备Mn3(PO4)2-蔗糖酶的纳米花固定化酶[以下简称Sucrase@Mn3(PO4)2],并对制备条件进行优化;同时对固定化酶的形态、结构进行表征,对固定化酶的动力学特性进行分析.结果表明:制得的Sucrase@Mn3(PO4)2纳米花颗粒分散,大小均匀,呈雏菊形、盛开状,且内部晶体结构完整;固定化酶有明显的Mn2+、PO43-、酶蛋白质的EDS特征峰及明显的酶蛋白质和磷酸根的FT-IR吸收特征;固定化酶表现出良好的温度稳定性和酸碱稳定性;Sucrase@Mn3(PO4)2被重复使用7次后其活性仍能保持其最初活力的40.38%;固定化酶在4 ℃保存28 d时仍保持40%的活性.

Abstract

Sucrase(Sucrase,EC 3.2.1.26)has high economic value in industry,and can be used to decompose sucrose to produce fructose and glucose.Nowadays,there are problems such as single sucrase fructose production method,not easy to maintain vitality and difficult to reuse.The nano-flower immobilized enzyme of Mn3(PO4)2/sucrase[hereinafter referred to as Sucrase@Mn3(PO4)2]was prepared by co-precipitation method,and the preparation conditions were optimized.The morphology and structure of the immobi-lized enzyme were characterized and the kinetic characteristics of the immobilized enzyme were analyzed.The results showed that the nano-flower particles of Sucrase@Mn3(PO4)2 were uniform in size,dispersed,daisy-shaped and blooming.The internal crystal struc-ture of nano-flower immobilized enzyme was complete.The immobilized enzyme had obvious EDS characteristic peaks of Mn2+,PO43-and enzyme protein,and had obvious FT-IR absorption characteristics of enzyme protein and phosphoric acid.It showed good tempera-ture stability and acid-base stability,and maintained its original activity of 40.38%after repeated use for 7 times and 40%when stored at 4 ℃ for 28 days.

关键词

固定化酶/纳米花/蔗糖酶/酶学性质/酶活力

Key words

immobilized enzyme/nano-flower/sucrase/enzymatic properties/enzyme activity

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基金项目

内蒙古自治区科技重大专项项目(222089)

出版年

2024
生物学杂志
合肥市科学技术协会

生物学杂志

CSTPCDCSCD北大核心
影响因子:0.554
ISSN:2095-1736
参考文献量26
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