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非天然抑制剂L-赖氨酸对高丝氨酸脱氢酶变构调节的合理设计。

Rational design of allosteric regulation of homoserine dehydrogenase by a nonnatural inhibitor L-lysine.

作者信息

Chen Zhen, Rappert Sugima, Zeng An-Ping

机构信息

Institute of Bioprocess and Biosystems Engineering, Hamburg University of Technology Denickestrasse 15, D-21073 Hamburg, Germany.

出版信息

ACS Synth Biol. 2015 Feb 20;4(2):126-31. doi: 10.1021/sb400133g. Epub 2014 Jan 6.

Abstract

Allosteric proteins, which can sense different signals, are interesting biological parts for synthetic biology. In particular, the design of an artificial allosteric enzyme to sense an unnatural signal is both challenging and highly desired, for example, for a precise and dynamical control of fluxes of growth-essential but byproduct pathways in metabolic engineering of industrial microorganisms. In this work, we used homoserine dehydrogenase (HSDH) of Corynebacterium glutamicum, which is naturally allosterically regulated by threonine and isoleucine, as an example to demonstrate the feasibility of reengineering an allosteric enzyme to respond to an unnatural inhibitor L-lysine. For this purpose, the natural threonine binding sites of HSD were first predicted and verified by mutagenesis experiments. The threonine binding sites were then engineered to a lysine binding pocket. The reengineered HSD only responds to lysine inhibition but not to threonine. This is a significant step toward the construction of artificial molecular circuits for dynamic control of growth-essential byproduct formation pathway for lysine biosynthesis.

摘要

能够感知不同信号的变构蛋白是合成生物学中有趣的生物元件。特别是,设计一种能感知非天然信号的人工变构酶既具有挑战性又备受期待,例如,用于在工业微生物代谢工程中精确动态控制生长必需但为副产物途径的通量。在这项工作中,我们以谷氨酸棒杆菌的高丝氨酸脱氢酶(HSDH)为例,它天然受到苏氨酸和异亮氨酸的变构调节,来证明重新设计一种变构酶以响应非天然抑制剂L-赖氨酸的可行性。为此,首先通过诱变实验预测并验证了HSD的天然苏氨酸结合位点。然后将苏氨酸结合位点改造为赖氨酸结合口袋。重新设计的HSD仅对赖氨酸抑制有反应,而对苏氨酸无反应。这是朝着构建用于动态控制赖氨酸生物合成中生长必需副产物形成途径的人工分子回路迈出的重要一步。

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