Potschka M, Nave R, Weber K, Geisler N
Max Planck Institute for Biophysical Chemistry, Department of Biochemistry, Göttingen, Federal Republic of Germany.
Eur J Biochem. 1990 Jul 5;190(3):503-8. doi: 10.1111/j.1432-1033.1990.tb15602.x.
Desmin protofilaments and the proteolytically derived alpha-helical rod domain have been characterized by high-resolution gel permeation chromatography (GPC) using columns calibrated for the determination of viscosity radii. Additional characterization by chemical cross-linking and the determination of sedimentation values allowed the calculation of the molecular dimensions of the molecular species isolated. In dilute buffers GPC separated desmin rod preparations into two complexes: a dimer species (single coiled coil) with a length of 50 +/- 5 nm and a tetramer species (two coiled coils) with a length of 65 +/- 5 nm. Thus the two coiled coils in the tetramer are staggered by approximately 15 nm. The hydrodynamically derived lengths of the rod dimer and tetramer are supported by electron microscopy after metal shadowing. The hydrodynamic properties of desmin protofilaments follow that of the rod tetramer. The data on the hydrodynamic analysis of the rod tetramer of desmin in solution are in full agreement with the structural information recently deduced from paracrystals of the rod of glial fibrillary acid protein [Stewart, M., Quinlan, R.A. & Moir, R.D. (1989) J. Cell Biol. 109, 225-234]. Our results explain the inhomogeneity of molecules encountered in previous electron microscopical analyses.
结蛋白原丝和经蛋白水解衍生的α-螺旋杆状结构域已通过高分辨率凝胶渗透色谱法(GPC)进行了表征,该方法使用了为测定粘度半径而校准的柱子。通过化学交联和沉降值测定进行的额外表征,使得能够计算所分离分子种类的分子尺寸。在稀缓冲液中,GPC将结蛋白杆状制剂分离成两种复合物:一种长度为50±5nm的二聚体种类(单螺旋卷曲)和一种长度为65±5nm的四聚体种类(两个螺旋卷曲)。因此,四聚体中的两个螺旋卷曲交错约15nm。金属投影后的电子显微镜观察支持了杆状二聚体和四聚体通过流体动力学得出的长度。结蛋白原丝的流体动力学特性与杆状四聚体的一致。关于溶液中结蛋白杆状四聚体的流体动力学分析数据与最近从胶质纤维酸性蛋白杆状副晶体推导的结构信息完全一致[斯图尔特,M.,昆兰,R.A.和莫伊尔,R.D.(1989年)《细胞生物学杂志》109,225 - 234]。我们的结果解释了先前电子显微镜分析中遇到的分子不均匀性。