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A structural and data-driven approach to engineering a plant cytochrome P450 enzyme.
Li, Dawei; Ma, Yongshuo; Zhou, Yuan; Gou, Junbo; Zhong, Yang; Zhao, Lingling; Han, Lida; Ovchinnikov, Sergey; Ma, Ling; Huang, Sanwen; Greisen, Per; Shang, Yi.
Afiliação
  • Li D; Agricultural Genome Institute at Shenzhen, Chinese Academy of Agricultural Sciences, Shenzhen, 518124, China.
  • Ma Y; Agricultural Genome Institute at Shenzhen, Chinese Academy of Agricultural Sciences, Shenzhen, 518124, China.
  • Zhou Y; School of Pharmacy, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, 430030, China.
  • Gou J; Agricultural Genome Institute at Shenzhen, Chinese Academy of Agricultural Sciences, Shenzhen, 518124, China.
  • Zhong Y; Agricultural Genome Institute at Shenzhen, Chinese Academy of Agricultural Sciences, Shenzhen, 518124, China.
  • Zhao L; Institute of Apicultural Research, Chinese Academy of Agricultural Sciences, Beijing, 100093, China.
  • Han L; Biotechnology Research Institute, Chinese Academy of Agricultural Sciences, Beijing, 100081, China.
  • Ovchinnikov S; FAS Center for Systems Biology, Harvard University, Cambridge, MA, 02138, USA.
  • Ma L; The CAAS-YNNU-YINMORE Joint Academy of Potato Science, Yunnan Normal University, Yunnan, 650500, China.
  • Huang S; Agricultural Genome Institute at Shenzhen, Chinese Academy of Agricultural Sciences, Shenzhen, 518124, China.
  • Greisen P; Global Research, Novo Nordisk A/S, Måløv, DK-2760, Denmark. pgreisen@gmail.com.
  • Shang Y; The CAAS-YNNU-YINMORE Joint Academy of Potato Science, Yunnan Normal University, Yunnan, 650500, China. shangyi@ynnu.edu.cn.
Sci China Life Sci ; 62(7): 873-882, 2019 07.
Article em En | MEDLINE | ID: mdl-31119558
ABSTRACT
Functional manipulation of biosynthetic enzymes such as cytochrome P450s (or P450s) has attracted great interest in metabolic engineering of plant natural products. Cucurbitacins and mogrosides are plant triterpenoids that share the same backbone but display contrasting bioactivities. This structural and functional diversity of the two metabolites can be manipulated by engineering P450s. However, the functional redesign of P450s through directed evolution (DE) or structure-guided protein engineering is time consuming and challenging, often because of a lack of high-throughput screening methods and crystal structures of P450s. In this study, we used an integrated approach combining computational protein design, evolutionary information, and experimental data-driven optimization to alter the substrate specificity of a multifunctional P450 (CYP87D20) from cucumber. After three rounds of iterative design and evaluation of 96 protein variants, CYP87D20, which is involved in the cucurbitacin C biosynthetic pathway, was successfully transformed into a P450 mono-oxygenase that performs a single specific hydroxylation at C11 of cucurbitadienol. This integrated P450-engineering approach can be further applied to create a de novo pathway to produce mogrol, the precursor of the natural sweetener mogroside, or to alter the structural diversity of plant triterpenoids by functionally manipulating other P450s.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Proteínas de Plantas / Sistema Enzimático do Citocromo P-450 Idioma: En Ano de publicação: 2019 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Proteínas de Plantas / Sistema Enzimático do Citocromo P-450 Idioma: En Ano de publicação: 2019 Tipo de documento: Article