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定向进化三组分 ATP 独立周质转运蛋白用于 3-羟基丙酸生物合成。

Directed evolution of tripartite ATP-independent periplasmic transporter for 3-Hydroxypropionate biosynthesis.

机构信息

College of Food Science & Engineering, Qingdao Special Food Research Institute, Qingdao Agricultural University, Qingdao, China.

Shandong Key Lab of Applied Mycology, College of Life Sciences, Qingdao Agricultural University, Qingdao, China.

出版信息

Appl Microbiol Biotechnol. 2023 Feb;107(2-3):663-676. doi: 10.1007/s00253-022-12330-1. Epub 2022 Dec 16.

Abstract

Our previous study's introduction of the malonic acid assimilation pathway into Escherichia coli enabled biosynthesis of 3-Hydroxypropionate (3-HP) from malonate. However, the relatively low uptake activity of tripartite ATP-independent periplasmic (TRAP) malonic acid transporter (MatPQM) is considered rate-limiting in malonate utilization. Here, to improve the transport performance of this importer, MatP variants were obtained via directed evolution and a novel developed enzyme-inhibition-based high throughput screening approach. This plate chromogenic screening method is based on the fact that malonic acid inhibits both of succinate dehydrogenase activity and further the capability of the reduction of methylene-blue to methylene-white. The best mutant E103G/S194G/Y218H/L235P/N272S showed twofold increased transport efficiency compared to the wild-type. ITC assay and structural analysis revealed that increased binding affinity of the mutant to the ligand was the reason for improved uptake activity of MatPQM. Finally, the engineered strain harboring the evolved mutant produced 20.08 g/L 3-HP with the yield of 0.87 mol/mol malonate in a bioreactor. Therefore, the well-established directed evolution strategy can be regarded as the reference work for other TRAP-type transporters engineering. And, this transporter mutant with enhanced malonic acid uptake activity has broad applications in the microbial biosynthesis of malonyl-CoA-derived valuable compounds in bacteria. KEY POINTS: • We reported directed evolution of a TRAP-type malonic acid transporter. • We found the enhanced malonate uptake activity of mutant lies in improved affinity. • We enhanced 3-HP bioproduction with high yield by employing the best mutant.

摘要

我们之前的研究将丙二酸同化途径引入大肠杆菌,使丙二酸能够从丙二酸盐生物合成 3-羟基丙酸(3-HP)。然而,三部分非依赖 ATP 的周质(TRAP)丙二酸转运蛋白(MatPQM)的相对较低摄取活性被认为是丙二酸盐利用的限速步骤。在这里,为了提高该转运蛋白的运输性能,通过定向进化获得了 MatP 变体,并开发了一种新的基于酶抑制的高通量筛选方法。这种平板显色筛选方法基于以下事实:丙二酸抑制琥珀酸脱氢酶的活性,并且进一步抑制亚甲基蓝向亚甲基白的还原能力。最佳突变体 E103G/S194G/Y218H/L235P/N272S 的转运效率比野生型提高了两倍。ITC 测定和结构分析表明,突变体与配体的结合亲和力增加是 MatPQM 摄取活性提高的原因。最后,在生物反应器中,携带进化突变体的工程菌株生产了 20.08 g/L 的 3-HP,丙二酸盐的产率为 0.87 mol/mol。因此,经过充分验证的定向进化策略可以被视为其他 TRAP 型转运蛋白工程的参考工作。并且,这种具有增强的丙二酸摄取活性的转运蛋白突变体在细菌中利用丙二酰辅酶 A 衍生的有价值化合物的微生物生物合成中具有广泛的应用。关键点:• 我们报道了 TRAP 型丙二酸转运蛋白的定向进化。• 我们发现突变体增强的丙二酸盐摄取活性在于提高了亲和力。• 我们通过使用最佳突变体增强了 3-HP 的生物产量和产率。

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