National Engineering Research Center of Cereal Fermentation and Food Biomanufacturing, Jiangsu Provincial Research Center for Bioactive Product Processing Technology, Jiangnan University, 1800 Lihu Road, Wuxi, Jiangsu, 214122, China.
Adv Sci (Weinh). 2024 Jun;11(23):e2307779. doi: 10.1002/advs.202307779. Epub 2024 Apr 3.
Acid-induced arginine decarboxylase AdiA is a typical homo-oligomeric protein biosynthesizing alkaline nylon monomer putrescine. However, upon loss of the AdiA decamer oligomeric state at neutral and alkaline conditions the activity also diminishes, obstructing the whole-cell biosynthesis of alkaline putrescine. Here, a structure cohesion strategy is proposed to change the pH adaptation of AdiA to alkaline environments based on the rational engineering of meridional and latitudinal oligomerization interfaces. After integrating substitutions of E467K at the latitudinal interface and H736E at the meridional channel interface, the structural stability of AdiA decamer and its substrate transport efficiency at neutral and alkaline conditions are improved. Finally, E467K_H736E is well adapted to neutral and alkaline environments (pH 7.0-9.0), and its enzymatic activity is 35-fold higher than that of wild AdiA at pH 8.0. Using E467K_H736E in the putrescine synthesis pathway, the titer of putrescine is up to 128.9 g·L with a conversion of 0.94 mol·mol in whole-cell catalysis. Additionally, the neutral pH adaptation of lysine decarboxylase, with a decamer structure similar to AdiA, is also improved using this cohesion strategy, providing an option for pH-adaptation engineering of other oligomeric decarboxylases.
酸诱导的精氨酸脱羧酶 AdiA 是一种典型的同型寡聚蛋白,生物合成碱性尼龙单体腐胺。然而,在中性和碱性条件下失去 AdiA 十聚体状态时,其活性也会减弱,从而阻碍碱性腐胺的全细胞生物合成。在此,提出了一种结构凝聚策略,基于对子午线和纬向寡聚化界面的合理工程改造,来改变 AdiA 对碱性环境的 pH 适应。在整合了纬向界面上的 E467K 和子午线通道界面上的 H736E 取代后,AdiA 十聚体的结构稳定性及其在中性和碱性条件下的底物传输效率得到了提高。最终,E467K_H736E 很好地适应了中性和碱性环境(pH7.0-9.0),其在 pH8.0 时的酶活比野生型 AdiA 高 35 倍。在腐胺合成途径中使用 E467K_H736E,在全细胞催化中腐胺的产量达到 128.9g·L,转化率为 0.94mol·mol。此外,还使用这种凝聚策略提高了赖氨酸脱羧酶的中性 pH 适应能力,赖氨酸脱羧酶具有与 AdiA 相似的十聚体结构,为其他寡聚脱羧酶的 pH 适应工程提供了一种选择。