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Structural basis of the Cope rearrangement and cyclization in hapalindole biogenesis.

Authors :
Newmister SA
Li S
Garcia-Borràs M
Sanders JN
Yang S
Lowell AN
Yu F
Smith JL
Williams RM
Houk KN
Sherman DH
Source :
Nature chemical biology [Nat Chem Biol] 2018 Apr; Vol. 14 (4), pp. 345-351. Date of Electronic Publication: 2018 Mar 12.
Publication Year :
2018

Abstract

Hapalindole alkaloids are a structurally diverse class of cyanobacterial natural products defined by their varied polycyclic ring systems and diverse biological activities. These complex metabolites are generated from a common biosynthetic intermediate by the Stig cyclases in three mechanistic steps: a rare Cope rearrangement, 6-exo-trig cyclization, and electrophilic aromatic substitution. Here we report the structure of HpiC1, a Stig cyclase that catalyzes the formation of 12-epi-hapalindole U in vitro. The 1.5-Å structure revealed a dimeric assembly with two calcium ions per monomer and with the active sites located at the distal ends of the protein dimer. Mutational analysis and computational methods uncovered key residues for an acid-catalyzed [3,3]-sigmatropic rearrangement, as well as specific determinants that control the position of terminal electrophilic aromatic substitution, leading to a switch from hapalindole to fischerindole alkaloids.

Details

Language :
English
ISSN :
1552-4469
Volume :
14
Issue :
4
Database :
MEDLINE
Journal :
Nature chemical biology
Publication Type :
Academic Journal
Accession number :
29531360
Full Text :
https://doi.org/10.1038/s41589-018-0003-x