Hughes Robert M, Waters Marcey L
Department of Chemistry, CB 3290, University of North Carolina, Chapel Hill, NC 27599, USA.
Curr Opin Struct Biol. 2006 Aug;16(4):514-24. doi: 10.1016/j.sbi.2006.06.008. Epub 2006 Jul 11.
beta-Sheets and alpha-helices are the two principal secondary structures in proteins. However, our understanding of beta-sheet structure lags behind that of alpha-helices, largely because, until recently, there was no model system to study the beta-sheet secondary structure in isolation. With the development of well-folded beta-hairpins, this is changing rapidly. Recent advances include: increased understanding of the relative contributions of turn, strand and sidechain interactions to beta-hairpin and beta-sheet stability, with the role of aromatic residues as a common subtheme; experimental and theoretical kinetic and thermodynamic studies of beta-hairpin and beta-sheet folding; de novo protein design, including all-beta structures, mixed alpha/beta motifs and switchable systems; and the creation of functional beta-hairpins.
β折叠和α螺旋是蛋白质中的两种主要二级结构。然而,我们对β折叠结构的理解落后于α螺旋,这主要是因为直到最近,还没有一个模型系统可以单独研究β折叠二级结构。随着折叠良好的β发夹的发展,这种情况正在迅速改变。最近的进展包括:对转角、链段和侧链相互作用对β发夹和β折叠稳定性的相对贡献有了更多了解,芳香族残基的作用是一个共同的主题;对β发夹和β折叠折叠的实验和理论动力学及热力学研究;从头蛋白质设计,包括全β结构、混合α/β基序和可切换系统;以及功能性β发夹的创建。