Interfaculty Institute of Biochemistry, University of Tübingen, 72076 Tübingen, Germany.
Institute of Pharmaceutical Biology and Biotechnology, Fachbereich Pharmacy, University of Marburg, 35037 Marburg, Germany.
J Mol Biol. 2021 Jan 22;433(2):166726. doi: 10.1016/j.jmb.2020.11.025. Epub 2020 Nov 26.
Prenylation is a process widely prevalent in primary and secondary metabolism, contributing to functionality and chemical diversity in natural systems. Due to their high regio- and chemoselectivities, prenyltransferases are also valuable tools for creation of new compounds by chemoenzymatic synthesis and synthetic biology. Over the last ten years, biochemical and structural investigations shed light on the mechanism and key residues that control the catalytic process, but to date crucial information on how certain prenyltransferases control regioselectivity and chemoselectivity is still lacking. Here, we advance a general understanding of the enzyme family by contributing the first structure of a tryptophan C5-prenyltransferase 5-DMATS. Additinally, the structure of a bacterial tryptophan C6-prenyltransferase 6-DMATS was solved. Analysis and comparison of both substrate-bound complexes led to the identification of key residues for catalysis. Next, site-directed mutagenesis was successfully implemented to not only modify the prenyl donor specificity but also to redirect the prenylation, thereby switching the regioselectivity of 6-DMATS to that of 5-DMATS. The general strategy of structure-guided protein engineering should be applicable to other related prenyltransferases, thus enabling the production of novel prenylated compounds.
prenylation 是一种在初级和次级代谢中广泛存在的过程,为自然系统的功能和化学多样性做出贡献。由于其具有高度的区域和化学选择性,prenyltransferase 也是通过化学酶合成和合成生物学创造新化合物的有价值的工具。在过去的十年中,生化和结构研究揭示了催化过程的机制和关键残基,但迄今为止,关于某些 prenyltransferase 如何控制区域和化学选择性的关键信息仍然缺乏。在这里,我们通过贡献第一个色氨酸 C5-prenyltransferase 5-DMATS 的结构,为了解该酶家族的一般机制提供了帮助。此外,还解决了细菌色氨酸 C6-prenyltransferase 6-DMATS 的结构。对两个结合底物的复合物进行分析和比较,确定了催化的关键残基。接下来,通过定点突变成功地改变了 prenyl 供体的特异性,并重新定向了 prenylation,从而将 6-DMATS 的区域选择性转换为 5-DMATS 的区域选择性。基于结构的蛋白质工程的一般策略应该适用于其他相关的 prenyltransferase,从而能够生产新型的 prenylated 化合物。