| Literature DB >> 15608122 |
Cong-Zhao Zhou1, Philippe Meyer, Sophie Quevillon-Cheruel, Inès Li De La Sierra-Gallay, Bruno Collinet, Marc Graille, Karine Blondeau, Jean-Marie François, Nicolas Leulliot, Isabelle Sorel, Anne Poupon, Joel Janin, Herman Van Tilbeurgh.
Abstract
We determined the three-dimensional crystal structure of the protein YML079wp, encoded by a hypothetical open reading frame from Saccharomyces cerevisiae to a resolution of 1.75 A. The protein has no close homologs and its molecular and cellular functions are unknown. The structure of the protein is a jelly-roll fold consisting of ten beta-strands organized in two parallel packed beta-sheets. The protein has strong structural resemblance to the plant storage and ligand binding proteins (canavalin, glycinin, auxin binding protein) but also to some plant and bacterial enzymes (epimerase, germin). The protein forms homodimers in the crystal, confirming measurements of its molecular mass in solution. Two monomers have their beta-sheet packed together to form the dimer. The presence of a hydrophobic ligand in a well conserved pocket inside the barrel and local sequence similarity with bacterial epimerases may suggest a biochemical function for this protein.Entities:
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Year: 2005 PMID: 15608122 PMCID: PMC2253319 DOI: 10.1110/ps.041121305
Source DB: PubMed Journal: Protein Sci ISSN: 0961-8368 Impact factor: 6.725