...
首页> 外文期刊>Catalysis science & technology >Improving the activity and synergistic catalysis of L-aspartate β-decarboxylase by arginine introduction on the surface
【24h】

Improving the activity and synergistic catalysis of L-aspartate β-decarboxylase by arginine introduction on the surface

机译:Improving the activity and synergistic catalysis of L-aspartate β-decarboxylase by arginine introduction on the surface

获取原文
获取原文并翻译 | 示例
           

摘要

Decarboxylase typically catalyzes reactions under acidic conditions, which is the drawback for its synergistic catalysis with other enzymes because most enzymes catalyze reactions under near neutral conditions. Improving the activity of decarboxylase under near neutral conditions will greatly contribute to its application in synthetic biology and multienzyme cascade catalysis for the production of chemical compounds, in which many enzymes need to function cooperatively. We choose L-aspartate β-decarboxylase (ASD) that is widely applied in industry to implement the semirational design strategy. The catalytic ability of ASD was successfully improved by substituting glutamic acid for arginine at the 88th position on the surface. The specific activity of an E88R variant was increased to 481 U mg~(-1) compared to 230 U mg~(-1) for the wild type. Furthermore, the stability over a range of pH 3.0-8.0 was dramatically increased. The catalytic ability and synergy with other enzymes of the E88R variant were demonstrated in a triple-enzyme system for L-alanine production, and the productivity was increased from 28.2 g (L~(-1) h-1) to 43.3 g (L~(-1) h~(-1)). The pH-dependent inactivation of ASD was relieved, and this strategy could be expanded to the decarboxylase family. Additionally, the variant obtained here also shows promising prospects for application in industry.
机译:通常脱羧酶催化下的反应酸性条件下,这是它的缺点与其他酶因为协同催化作用大多数酶催化反应在附近中性的条件。在近中性条件下脱羧酶对其应用有很大的影响合成生物学和多酶的级联催化生产的化学物质化合物,许多酶需要的功能合作。β脱羧酶广泛应用于(ASD)行业实现semirational设计策略。成功地提高了用谷氨酸酸为精氨酸88位置表面。增加到481 U毫克~ 230 U(1)相比毫克~(1)野生型。稳定在一个范围的pH值3.0 - -8.0大大增加了。与其他酶的协同作用E88R变体在triple-enzyme系统吗丙氨酸生产和生产力从28.2克(h - L ~(1)) 43.3克(L ~ (1) h ~(1))。自闭症是松了一口气,这一策略脱羧酶家族扩大。此外,这里也获得的变体显示了应用前景行业。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号