| Literature DB >> 31306512 |
Qingping Xu1,2,3, Matthew Biancalana4, Joanna C Grant1, Hsiu-Ju Chiu1,2, Lukasz Jaroszewski1,5,6,7, Mark W Knuth1,8, Scott A Lesley1,8,9,10, Adam Godzik1,5,6,7, Marc-André Elsliger1,9, Ashley M Deacon1,2,11, Ian A Wilson1,9.
Abstract
Free-standing single-layer β-sheets are extremely rare in naturally occurring proteins, even though β-sheet motifs are ubiquitous. Here we report the crystal structures of three homologous, single-layer, anti-parallel β-sheet proteins, comprised of three or four twisted β-hairpin repeats. The structures reveal that, in addition to the hydrogen bond network characteristic of β-sheets, additional hydrophobic interactions mediated by small clusters of residues adjacent to the turns likely play a significant role in the structural stability and compensate for the lack of a compact hydrophobic core. These structures enabled identification of a family of secreted proteins that are broadly distributed in bacteria from the human gut microbiome and are putatively involved in the metabolism of complex carbohydrates. A conserved surface patch, rich in solvent-exposed tyrosine residues, was identified on the concave surface of the β-sheet. These new modular single-layer β-sheet proteins may serve as a new model system for studying folding and design of β-rich proteins.Entities:
Keywords: human gut microbiome; protein folding; secreted proteins; single-layer β-sheet proteins; structural genomics; β-hairpin repeats
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Year: 2019 PMID: 31306512 PMCID: PMC6699103 DOI: 10.1002/pro.3683
Source DB: PubMed Journal: Protein Sci ISSN: 0961-8368 Impact factor: 6.725