| Literature DB >> 34306805 |
Shidan Wu1, Fan Zhang2, Wenbo Xiong1, István Molnár3, Jincai Liang1, Aijia Ji1, Caixia Wang4, Shengliang Wang1, Zhongqiu Liu1,5, Ruibo Wu2, Lixin Duan1.
Abstract
Ordered polycyclization catalyzed by oxidosqualene synthases (OSCs) morph a common linear precursor into structurally complex and diverse triterpene scaffolds with varied bioactivities. We identified three OSCs from Iris tectorum. ItOSC2 is a rare multifunctional α-amyrin synthase. Sequence comparisons, site-directed mutagenesis and multiscale simulations revealed that three spatially clustered residues, Y531/L256/L258 form an unusual Y-LL triad at the active site, replacing the highly conserved W-xY triad occurring in other amyrin synthases. The discovery of this unprecedented active site architecture in ItOSC2 underscores the plasticity of terpene cyclase catalytic mechanisms and opens new avenues for protein engineering towards custom designed OSCs.Entities:
Keywords: Enzyme Catalysis; Enzyme Promiscuity; Oxidosqualene Cyclase; QM/MM; Triterpene
Year: 2020 PMID: 34306805 PMCID: PMC8297885 DOI: 10.1021/acscatal.0c03231
Source DB: PubMed Journal: ACS Catal Impact factor: 13.084