National Resource Center for Chinese Materia Medica, China Academy of Chinese Medical Sciences, Beijing, China.
School of Pharmaceutical Sciences, Capital Medical University, Beijing, China.
Plant Biotechnol J. 2023 Jan;21(1):165-175. doi: 10.1111/pbi.13933. Epub 2022 Oct 12.
Selaginella moellendorffii miltiradiene synthase (SmMDS) is a unique bifunctional diterpene synthase (diTPS) that catalyses the successive cyclization of (E,E,E)-geranylgeranyl diphosphate (GGPP) via (+)-copalyl diphosphate (CPP) to miltiradiene, which is a crucial precursor of important medicinal compounds, such as triptolide, ecabet sodium and carnosol. Miltiradiene synthetic processes have been studied in monofunctional diTPSs, while the precise mechanism by which active site amino acids determine product simplicity and the experimental evidence for reaction intermediates remain elusive. In addition, how bifunctional diTPSs work compared to monofunctional enzymes is attractive for detailed research. Here, by mutagenesis studies of SmMDS, we confirmed that pimar-15-en-8-yl is an intermediate in miltiradiene synthesis. Moreover, we determined the apo-state and the GGPP-bound state crystal structures of SmMDS. By structure analysis and mutagenesis experiments, possible contributions of key residues both in class I and II active sites were suggested. Based on the structural and functional analyses, we confirmed the copal-15-yl intermediate and unveiled more details of the catalysis process in the SmMDS class I active site. Moreover, the structural and experimental results suggest an internal channel for (+)-CPP produced in the class II active site moving towards the class I active site. Our research is a good example for intermediate identification of diTPSs and provides new insights into the product specificity determinants and intermediate transport, which should greatly facilitate the precise controlled synthesis of various diterpenes.
卷柏鲨烯合酶(SmMDS)是一种独特的双功能二萜合酶(diTPS),能够通过(+)-贝壳杉烯二磷酸(CPP)催化(E,E,E)-香叶基香叶基二磷酸(GGPP)的连续环化,生成重要药用化合物的关键前体物质,如雷公藤红素、依卡倍特钠和没食子酸。已经在单功能 diTPS 中研究了鲨烯的合成过程,然而,活性位点氨基酸决定产物简单性的精确机制以及反应中间体的实验证据仍然难以捉摸。此外,双功能 diTPS 与单功能酶的工作方式相比,对于详细研究具有吸引力。在这里,通过对 SmMDS 的突变研究,我们证实了 pimar-15-en-8-yl 是鲨烯合成的中间产物。此外,我们还确定了 SmMDS 的 apo 状态和 GGPP 结合状态的晶体结构。通过结构分析和突变实验,提出了 I 类和 II 类活性位点中关键残基的可能贡献。基于结构和功能分析,我们证实了 copal-15-yl 中间产物,并揭示了 SmMDS I 类活性位点中催化过程的更多细节。此外,结构和实验结果表明,在 II 类活性位点中产生的(+)-CPP 可能通过内部通道向 I 类活性位点移动。我们的研究为二萜合酶的中间产物鉴定提供了一个很好的范例,并为产物特异性决定因素和中间产物转运提供了新的见解,这应该极大地促进各种二萜的精确可控合成。