Crystal structure of Hyp-1, a St. John's wort protein implicated in the biosynthesis of hypericin
Authors:
- Karolina Michalska,
- Humberto Fernandes,
- Michal Sikorski,
- Mariusz Jaskólski
Abstract
Hypericin, a red-colored naphtodianthrone, is a natural product synthesized in the medicinal plant Hypericum perforatum, widely known as St. John's wort. Hypericin has been attracting a growing attention of the pharmaceutical industry because of its potential application in various therapies, including the treatment of depression. In vivo, hypericin is synthesized by dimerization of emodin in a complicated multistep reaction that is reportedly catalyzed by a small (17.8 kDa) protein, Hyp-1. Based on relatively low sequence similarity (∼50%), Hyp-1 has been tentatively classified as a plant PR-10 (pathogenesis-related class 10) protein. Members of the PR-10 family are ubiquitous plant proteins associated with stress control and tissue differentiation but with no clearly understood molecular mechanism. They have, however, a well-defined folding canon, consisting of an extended antiparallel β-sheet wrapped around a C-terminal α-helix, enclosing in the protein interior a huge cavity, in which various hydrophobic ligands can be bound. Apart from Hyp-1, only two other PR-10 members have been found to possess enzymatic activity (S-norcoclaurine synthase and TcmN aromatase/cyclase). In this paper, we report a high-resolution crystal structure of Hyp-1, confirming that it indeed has a PR-10 fold. The protein binds multiple polyethylene glycol molecules, some of which occupy the hydrophobic cavity. The crystallographic model illustrates a high degree of conformational adaptability of both interacting partners for efficient binding. We have been unable, however, to dimerize emodin to hypericin using Hyp-1 as biocatalyst. This puzzling result does not have a clear explanation at this time. © 2009 Elsevier Inc. All rights reserved.
- Record ID
- UAM542cada5a489429a9cde2ed05c0bca02
- Author
- Journal series
- Journal of Structural Biology, ISSN 1047-8477
- Issue year
- 2010
- Vol
- 169
- Pages
- 161-171
- ASJC Classification
- DOI
- DOI:10.1016/j.jsb.2009.10.008 Opening in a new tab
- Language
- (en) English
- Score (nominal)
- 0
- Score source
- journalList
- Publication indicators
- = 40; = 40; : 2010 = 1.177; : 2010 (2 years) = 3.500 - 2010 (5 years) =4.152
- Uniform Resource Identifier
- https://researchportal.amu.edu.pl/info/article/UAM542cada5a489429a9cde2ed05c0bca02/
- URN
urn:amu-prod:UAM542cada5a489429a9cde2ed05c0bca02
* presented citation count is obtained through Internet information analysis and it is close to the number calculated by the Publish or PerishOpening in a new tab system.