State Key Laboratory of Dao-di Herbs, National Resource Center for Chinese Materia Medica, China Academy of Chinese Medical Sciences, Beijing 100700, China.
Key Laboratory of Plant Secondary Metabolism and Regulation in Zhejiang Province, College of Life Sciences and Medicine, Zhejiang Sci-Tech University, Hangzhou 310018, China.
Molecules. 2023 Jun 12;28(12):4711. doi: 10.3390/molecules28124711.
is a large genus with hundreds of species used in traditional Chinese medicine. Tanshinones are a highly representative class of exclusive compounds found in the genus that exhibit significant biological activity. Tanshinone components have been identified in 16 species. The CYP76AH subfamily (P450) is crucial for the synthesis of tanshinone due to its catalytic generation of polyhydroxy structures. In this study, a total of 420 CYP76AH genes were obtained, and phylogenetic analysis showed their clear clustering relationships. Fifteen CYP76AH genes from 10 species were cloned and studied from the perspectives of evolution and catalytic efficiency. Three CYP76AHs with significantly improved catalytic efficiency compared to SmCYP76AH3 were identified, providing efficient catalytic elements for the synthetic biological production of tanshinones. A structure-function relationship study revealed several conserved residues that might be related to the function of CYP76AHs and provided a new mutation direction for the study of the directed evolution of plant P450.
丹参是一个拥有数百种用于中药的大型属。丹参酮是该属中高度代表性的独特化合物类,具有显著的生物活性。已经在 16 种物种中鉴定出丹参酮成分。CYP76AH 亚科(P450)对于丹参酮的合成至关重要,因为它催化生成多羟基结构。在这项研究中,共获得了 420 个 CYP76AH 基因,系统发育分析表明它们具有明显的聚类关系。从进化和催化效率的角度,从 10 个物种中克隆和研究了 15 个 CYP76AH 基因。与 SmCYP76AH3 相比,鉴定出了 3 个具有显著提高催化效率的 CYP76AH,为丹参酮的合成生物学生产提供了高效的催化元件。结构-功能关系研究揭示了几个保守残基,这些残基可能与 CYP76AH 的功能有关,并为植物 P450 定向进化的研究提供了一个新的突变方向。