Piñeiro Angel, Villa Alessandra, Vagt Toni, Koksch Beate, Mark Alan E
Department of Biophysical Chemistry, University of Groningen, 9747 AG Groningen, The Netherlands.
Biophys J. 2005 Dec;89(6):3701-13. doi: 10.1529/biophysj.104.055590. Epub 2005 Sep 8.
The formation, relative stability, and possible stoichiometries of two (self-)complementary peptide sequences (B and E) designed to form either a parallel homodimeric (B + B) or an antiparallel heterodimeric (B + E) coiled coil have been investigated. Peptide B shows a characteristic coiled coil pattern in circular dichroism spectra at pH 7.4, whereas peptide E is apparently random coiled under these conditions. The peptides are complementary to each other, with peptide E forming a coiled coil when mixed with peptide B. Molecular dynamics simulations show that combinations of B + B and B + E readily form a dimeric coiled coil, whereas E + E does not fall in line with the experimental data. However, the simulations strongly suggest the preferred orientation of the helices in the homodimeric coiled coil is antiparallel, with interactions at the interface quite different to that of the idealized model. In addition, molecular dynamics simulations suggest equilibrium between dimers, trimers, and tetramers of alpha-helices for peptide B.
对设计用于形成平行同二聚体(B + B)或反平行异二聚体(B + E)卷曲螺旋的两个(自身)互补肽序列(B和E)的形成、相对稳定性和可能的化学计量进行了研究。肽B在pH 7.4的圆二色光谱中显示出特征性的卷曲螺旋模式,而肽E在这些条件下显然是无规卷曲的。这些肽相互互补,肽E与肽B混合时形成卷曲螺旋。分子动力学模拟表明,B + B和B + E组合很容易形成二聚体卷曲螺旋,而E + E不符合实验数据。然而,模拟强烈表明同二聚体卷曲螺旋中螺旋的首选取向是反平行的,界面处的相互作用与理想化模型有很大不同。此外,分子动力学模拟表明肽B的α-螺旋二聚体、三聚体和四聚体之间存在平衡。