Burkhard Peter, Ivaninskii Sergei, Lustig Ariel
M.E. Müller Institute for Structural Biology, Biozentrum, University of Basel, Klingelbergstrasse 70, CH-4056 Basel, Switzerland.
J Mol Biol. 2002 May 3;318(3):901-10. doi: 10.1016/S0022-2836(02)00114-6.
Alpha-helical coiled coils are a common protein oligomerization motif stabilized mainly by hydrophobic interactions occurring along the coiled-coil interface. We have recently designed and solved the structure of a two-heptad repeat coiled-coil peptide that is stabilized further by a complex network of inter- and intrahelical salt-bridges in addition to the hydrophobic interactions. Here, we extend and improve the de novo design of this two heptad-repeat peptide by four newly designed peptides characterized by different types of ionic interactions. The contribution of these different types of ionic interactions to coiled-coil stability are analyzed by CD spectroscopy and analytical ultracentrifugation. We show that all peptides are highly alpha-helical and two of them are 100% dimeric under physiological conditions. Furthermore, we have solved the X-ray structure of the most stable of these peptides and the rational design principles are verified by comparing this structure to the structure of the parent peptide. We show that by combining the most favorable inter- and intrahelical salt-bridge arrangements it is possible to design coiled-coil oligomerization domains with improved stability properties.
α-螺旋卷曲螺旋是一种常见的蛋白质寡聚基序,主要通过沿卷曲螺旋界面发生的疏水相互作用而稳定。我们最近设计并解析了一种双七肽重复卷曲螺旋肽的结构,除了疏水相互作用外,它还通过螺旋间和螺旋内盐桥的复杂网络进一步稳定。在此,我们通过四种以不同类型离子相互作用为特征的新设计肽,扩展并改进了这种双七肽重复肽的从头设计。通过圆二色光谱和分析型超速离心分析了这些不同类型离子相互作用对卷曲螺旋稳定性的贡献。我们表明,所有肽都具有高度的α-螺旋结构,其中两种在生理条件下100%形成二聚体。此外,我们解析了这些肽中最稳定的一种的X射线结构,并通过将该结构与亲本肽的结构进行比较,验证了合理的设计原则。我们表明,通过结合最有利的螺旋间和螺旋内盐桥排列,可以设计出具有更高稳定性的卷曲螺旋寡聚结构域。