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Engineering low-temperature expression systems for heterologous production of cold-adapted enzymes

机译:工程低温表达系统,用于异源生产冷适应酶

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Production of psychrophilic enzymes in the commonly used mesophilic expression systems is hampered by low intrinsic stability of the recombinant enzymes at the optimal host growth temperatures. Unless strategies for low-temperature expression are advanced, research on psychrophilic enzymes may end up being biased toward those that can be stably produced in commonly used mesophilic host systems. Two main strategies are currently being explored for the development of low-temperature expression in bacterial hosts: (i) low-temperature adaption of existing mesophilic expression systems, and (ii) development of new psychrophilic hosts. These developments include genetic engineering of the expression cassettes to optimize the promoter/operator systems that regulate heterologous expression. In this addendum we present our efforts in the development of such low-temperature expression systems, and speculate about future advancements in the field and potential applications.
机译:在最佳宿主生长温度下,重组酶的低固有稳定性阻碍了常用的嗜温表达系统中嗜冷酶的产生。除非提出低温表达策略,否则对嗜冷性酶的研究可能最终会偏向于在通常使用的嗜温性宿主系统中可以稳定产生的酶。目前正在探索两种主要策略来开发细菌宿主中的低温表达:(i)现有嗜温表达系统的低温适应性;以及(ii)开发新的嗜冷宿主。这些发展包括表达盒的基因工程,以优化调节异源表达的启动子/操纵子系统。在此附录中,我们介绍了我们在开发此类低温表达系统方面所做的努力,并推测了该领域的未来进展和潜在应用。

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