Tunable, Post-translational Hydroxylation of Collagen Domains in Escherichia coli

TitleTunable, Post-translational Hydroxylation of Collagen Domains in Escherichia coli
Publication TypeJournal Article
Year of Publication2011
AuthorsPinkas, DM, Ding, S, Raines, RT, Barron, AE
JournalACS Chemical Biology
Volume6
Pagination320-324
Date PublishedApr
Accession NumberISI:000289455400005
Keywordsascorbic-acid, Biochemistry & Molecular Biology, conformational stability, expression, Human prolyl 4-hydroxylase, kinetics, peptides, procollagen, TRANSITION, triple-helix, yeast pichia-pastoris
Abstract

Prolyl 4-hydroxylases are ascorbate-dependent oxygenases that play key roles in a variety of eukaryotic biological processes including oxygen sensing, siRNA regulation, and collagen folding. They perform their functions by catalyzing the post-translational hydroxylation of specific proline residues on target proteins to form (2S,4R)-4-hydroxyproline. Thus far, the study of these post-translational modifications has been limited by the lack of a prokaryotic recombinant expression system for producing hydroxylated proteins By introducing a biosynthetic shunt to produce ascorbate-like molecules in Eschericia coli cells that heterologously express human prolyl, 4-hydroxylase (P4H), we have created a strain of E. coil that produces collagenous proteins with high levels of (2S,4R)-4-hydroxyproline. Using this new system, we have observed hydroxylation patterns indicative of a processive catalytic mode for P4H that is active even in the absence of ascorbate. Our results provide insights into P4H enzymology and create a foundation for better understanding how post translational hydroxylation affects proteins:

Short TitleACS Chem. Biol.