Guo Yujie, Tu Tao, Qiu Jin, Tong Lige, Luo Huiying, Yao Bin
Feed Research Institute, Chinese Academy of Agricultural Sciences, Beijing 100081, China.
Sheng Wu Gong Cheng Xue Bao. 2019 Apr 25;35(4):616-625. doi: 10.13345/j.cjb.180330.
Glucoamylase is a critical ingredient for saccharification in the starch decomposition, and widely used in food, pharmaceutical and fermentation industries. Glucoamylases are usually thermostable and have peak activities at high temperature, as required for the industrial process of glucose production. In this study, a glucoamylase gene belonging to the glycoside hydrolase (GH) family 15, Tlga15A, was cloned from Talaromyces leycettanus JCM12802, and successfully expressed in Pichia pastoris GS115. Recombinant glucoamylase TlGA showed optimal activities at pH 4.5 and 75 °C. The result of thermostability analysis showed that TlGA retained above 70% activity after incubating for 1 h at 65 °C, and 43% residual activity after 30 min at 70 °C. Moreover, TlGA had high resistance to most metal ions and chemical reagents tested. Various starch substrates could be hydrolyzed by TlGA, including soluble starch (255.6±15.3) U/mg, amylopectin (342.3±24.7) U/mg, glycogen (185.4±12.5) U/mg, dextrin (423.3±29.3) U/mg and pullulan (65.7±8.1) U/mg. The primary, secondary and tertiary structures of glucoamylase were further analyzed. The low ratio of Gly in the primary structure and low exposed nonpolarity solvent accessible surface in the tertiary structure may be the main reasons for TlGA's thermostability. These results show that TlGA is great promising for potential use in the commercial production of glucose syrups. Moreover, this research will provide knowledge and innovating ideas for the improvement of glucoamylase thermostability.
糖化酶是淀粉分解糖化过程中的关键成分,广泛应用于食品、制药和发酵工业。糖化酶通常具有热稳定性,并且在高温下具有峰值活性,这是葡萄糖生产工业过程所需要的。在本研究中,从莱氏炭角菌JCM12802中克隆了一个属于糖苷水解酶(GH)家族15的糖化酶基因Tlga15A,并在毕赤酵母GS115中成功表达。重组糖化酶TlGA在pH 4.5和75℃下表现出最佳活性。热稳定性分析结果表明,TlGA在65℃孵育1小时后保留了70%以上的活性,在70℃孵育30分钟后保留了43%的残余活性。此外,TlGA对大多数测试的金属离子和化学试剂具有高抗性。各种淀粉底物都可以被TlGA水解,包括可溶性淀粉(255.6±15.3)U/mg、支链淀粉(342.3±24.7)U/mg、糖原(185.4±12.5)U/mg、糊精(423.3±29.3)U/mg和普鲁兰多糖(65.7±8.1)U/mg。进一步分析了糖化酶的一级、二级和三级结构。一级结构中甘氨酸比例低以及三级结构中暴露的非极性溶剂可及表面低可能是TlGA热稳定性的主要原因。这些结果表明,TlGA在葡萄糖糖浆的商业生产中具有巨大的应用潜力。此外,本研究将为提高糖化酶热稳定性提供知识和创新思路。