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通过工程化多个二硫键和减轻与二硫键相关的降低的脂肪酶生产来提高解脂耶氏酵母脂肪酶 2 的热稳定性。

Enhancing thermostability of Yarrowia lipolytica lipase 2 through engineering multiple disulfide bonds and mitigating reduced lipase production associated with disulfide bonds.

机构信息

College of Animal Science, South China Agricultural University, Guangzhou 510640, China; Guangdong Provincial Key Laboratory of Animal Nutrition Control, College of Animal Science, South China Agricultural University, Guangzhou 510642, China.

College of Animal Science, South China Agricultural University, Guangzhou 510640, China; Guangdong Provincial Key Laboratory of Animal Nutrition Control, College of Animal Science, South China Agricultural University, Guangzhou 510642, China.

出版信息

Enzyme Microb Technol. 2019 Jul;126:41-49. doi: 10.1016/j.enzmictec.2019.03.008. Epub 2019 Mar 30.

Abstract

The limited thermostability of Yarrowia lipolytica lipase 2 (Lip2) hampers its industrial application. To improve its thermostability, we combined single disulfide bonds which our group identified previously. In this study, combining different regional disulfide bonds had greater effect than combining same regional disulfide bonds. Furthermore, mutants with 4, 5, and 6 disulfide bonds exhibited dramatically enhanced thermostability. Compared with the wild-type, sextuple mutant 6s displayed a 22.53 and 31.23 ℃ increase in the melting temperature (T) and the half loss temperature at 15 min (T15 50), respectively, with greater pH stability and a wider reaction pH range. Molecular dynamics simulation revealed that multiple disulfide bonds resulted in more rigid structures of mutants 4s, 5s and 6s, and prolonged enzyme unfolding times. Moreover, secretions of mutants 5s and 6s were significantly increased by 60% and 80% by co-expressing with the chaperone protein disulfide isomerase (PDI), which mitigated the reduced production issue caused by multiple disulfide bonds. Results of this study indicated that enhanced heat endurance giving more potential for industrial application.

摘要

解脂耶氏酵母脂肪酶 2(Lip2)的热稳定性有限,限制了其工业应用。为了提高其热稳定性,我们组合了我们小组先前确定的单个二硫键。在这项研究中,组合不同区域的二硫键比组合相同区域的二硫键效果更好。此外,具有 4、5 和 6 个二硫键的突变体表现出显著增强的热稳定性。与野生型相比,六重突变体 6s 的熔点(T)和 15 分钟时的半失活温度(T15 50)分别提高了 22.53 和 31.23℃,具有更好的 pH 稳定性和更宽的反应 pH 范围。分子动力学模拟表明,多个二硫键导致突变体 4s、5s 和 6s 的结构更加刚性,并延长了酶的展开时间。此外,与伴侣蛋白二硫键异构酶(PDI)共表达可使突变体 5s 和 6s 的分泌分别显著增加 60%和 80%,这减轻了多个二硫键引起的产量降低问题。这项研究的结果表明,增强的耐热性为其在工业应用中提供了更多的潜力。

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