Langs D A, Smith G D, Courseille C, Précigoux G, Hospital M
Department of Molecular Biophysics, Medical Foundation of Buffalo, Inc., NY 14203.
Proc Natl Acad Sci U S A. 1991 Jun 15;88(12):5345-9. doi: 10.1073/pnas.88.12.5345.
A comparison of the monoclinic and orthorhombic crystal structures of the uncomplexed double-stranded, antiparallel, left-handed beta-helix (5.6 amino acid residues per turn) (increases decreases beta 5.6) conformers of gramicidin A reveals marked differences in the tryptophan side-chain orientations and the degree of helical uniformity of the dimer and in the manner in which these helical dimers associate with one another in the crystal. The helix of the orthorhombic dimer exhibits a regular pattern of bulges and constrictions that appears to be induced by crystal packing forces affecting tryptophan side chains that are aligned parallel to the helix axis. The monoclinic dimer is more uniform than the orthorhombic dimer as a consequence of pi stacking interactions between dimers in which orientation of tryptophan side chains is normal to the helix axis to relieve the lateral crystal packing forces that may locally twist and deform the helix. It may be inferred from these observations that lipid interactions may be expected to destabilize the increases decreases beta 5.6 helix when it is inserted into a membrane bilayer.
对短杆菌肽A未复合的双链、反平行、左手β-螺旋(每圈5.6个氨基酸残基)(β5.6增加或减少)构象的单斜晶系和正交晶系晶体结构进行比较,结果显示,在色氨酸侧链取向、二聚体螺旋均匀度以及这些螺旋二聚体在晶体中彼此缔合的方式上存在显著差异。正交二聚体的螺旋呈现出规则的凸起和收缩模式,这似乎是由影响与螺旋轴平行排列的色氨酸侧链的晶体堆积力所诱导的。单斜二聚体比正交二聚体更均匀,这是由于二聚体之间的π堆积相互作用,其中色氨酸侧链的取向垂直于螺旋轴,以减轻可能使螺旋局部扭曲和变形的横向晶体堆积力。从这些观察结果可以推断,当β5.6螺旋插入膜双分子层时,脂质相互作用可能会使其不稳定。