Wu Shujiao, Luo Lingling, Luo Houtian, Qiao Li, Chen Haomin, Li Mijun, Pei Xiaolin, Xie Tian, Wang Anming, Sheldon Roger A
School of Pharmacy, Hangzhou Normal University, China, Hangzhou, Zhejiang, 311121, China.
College of Materials Chemistry and Chemical Engineering, Hangzhou Normal University, Hangzhou, Zhejiang, 311121, China.
Small. 2024 Dec;20(51):e2404018. doi: 10.1002/smll.202404018. Epub 2024 Aug 12.
The designed and ordered co-immobilization of multiple enzymes for vectorial biocatalysis is challenging. Here, a combination of protein phase separation and bioorthogonal linking is used to generate a zeolitic imidazole framework (ZIF-8) containing co-immobilized enzymes. Zn ions induce the clustering of minimal protein modules, such as 6-His tag, proline-rich motif (PRM) and SRC homology 3 (SH3) domains, and allow for phase separation of the coupled aldoketoreductase (AKR) and alcohol dehydrogenase (ADH) at low concentrations. This is achieved by fusing SpyCatcher and PRM-SH3-6His peptide fragments to the C and N termini of AKR, respectively, and the SpyTag to ADH. Addition of 2-methylimidazole results in droplet formation and enables in situ spatial embedding the recombinant AKR and ADH to generate the cascade biocalysis system encapsulated in ZIF-8 (AAE@ZIF). In synthesizing (S)-1-(2-chlorophenyl) ethanol, ater 6 cycles, the yield can still reach 91%, with 99.99% enantiomeric excess (ee) value for each cycle. However, the yield could only reach 72.9% when traditionally encapsulated AKR and ADH in ZIF-8 are used. Thus, this work demonstrates that a combination of protein phase separation and bio-orthogonal linking enables the in situ creation of a stable and spatially organized bi-enzyme system with enhanced channeling effects in ZIF-8.
设计并有序地共固定多种酶用于矢量生物催化具有挑战性。在此,蛋白质相分离和生物正交连接相结合,用于生成包含共固定酶的沸石咪唑框架(ZIF-8)。锌离子诱导最小蛋白质模块(如6-组氨酸标签、富含脯氨酸基序(PRM)和SRC同源3(SH3)结构域)聚集,并允许偶联的醛酮还原酶(AKR)和醇脱氢酶(ADH)在低浓度下发生相分离。这是通过分别将SpyCatcher和PRM-SH3-6His肽片段融合到AKR的C端和N端,以及将SpyTag融合到ADH上来实现的。添加2-甲基咪唑会导致液滴形成,并能够原位空间嵌入重组AKR和ADH,以生成封装在ZIF-8中的级联生物催化系统(AAE@ZIF)。在合成(S)-1-(2-氯苯基)乙醇时,经过6个循环,产率仍可达到91%,每个循环的对映体过量(ee)值为99.99%。然而,当使用传统方法将AKR和ADH封装在ZIF-8中时,产率仅能达到72.9%。因此,这项工作表明,蛋白质相分离和生物正交连接相结合能够在ZIF-8中原位创建一个稳定且空间有序的双酶系统,并具有增强的通道效应。