| Literature DB >> 30222239 |
Chun-Chi Chen1, Xiangying Hu2, Xueke Tang2,3, Yunyun Yang4, Tzu-Ping Ko5, Jian Gao2, Yingying Zheng2, Jian-Wen Huang1, Zhengsen Yu4, Liping Li4, Shuai Han4, Ningning Cai4, Yonghui Zhang4, Weidong Liu1,2, Rey-Ting Guo1,2.
Abstract
Found recently in stignomatales, the Stig cyclases catalyze the Cope rearrangement and intramolecular cyclization to produce complex indole alkaloids. Five crystal structures were solved of subfamily 1 and 2 Stig cyclases, which adopt a β-sandwich fold like the non-catalytic carbohydrate-binding motif. Several complex structures were also determined of indole-based compounds, which are bound to the hydrophobic terminal cavity, where a conserved Asp residue makes an H-bond to the indole N and triggers the acid-catalyzed Cope rearrangement. Through analyzing the enzyme-ligand interactions and mutagenesis experiments, several aromatic residues were found important in catalysis. Apart from a common substrate binding mode and catalytic mechanism, potential subfamily variations that may attribute to the different product specificity are implicated. These results shall expand our scope of enzymology, in particular for further investigation of the biosynthetic Cope rearrangement.Entities:
Keywords: Cope rearrangement; X-ray crystallography; alkaloids; cyclase; stigonematales
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Year: 2018 PMID: 30222239 DOI: 10.1002/anie.201808231
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336