Joint Center for Structural Genomics, www.jcsg.org.
Stanford Synchrotron Radiation Lightsource, SLAC National Accelerator Laboratory, Menlo Park, California.
Protein Sci. 2019 Sep;28(9):1676-1689. doi: 10.1002/pro.3683. Epub 2019 Aug 2.
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.
游离单层β-折叠在天然存在的蛋白质中极为罕见,尽管β-折叠基序无处不在。在这里,我们报告了三个同源的、单层、反平行β-折叠蛋白的晶体结构,它们由三个或四个扭曲的β-发夹重复组成。这些结构表明,除了β-折叠特有的氢键网络外,相邻转角处的小残基簇介导的额外疏水相互作用可能在结构稳定性中发挥重要作用,并弥补了缺乏紧凑疏水性核心的缺陷。这些结构鉴定出了一组广泛分布于人类肠道微生物组中细菌的分泌蛋白,它们可能参与复杂碳水化合物的代谢。在β-折叠的凹面表面上鉴定到了富含溶剂暴露的酪氨酸残基的保守表面补丁。这些新的模块化单层β-折叠蛋白可能成为研究富含β 的蛋白质折叠和设计的新模型系统。