Iyer L K, Vishveshwara S
Molecular Biophysics Unit, Indian Institute of Science, Bangalore, India.
Biopolymers. 1996 Mar;38(3):401-21. doi: 10.1002/(SICI)1097-0282(199603)38:3%3C401::AID-BIP12%3E3.0.CO;2-F.
Bacteriorhodopsin (bR) continues to be a proven testing ground for the study of integral membrane proteins (IMPs). It is important to study the stability of the individual helices of bR, as they are postulated to exist as independently stable transmembrane helices (TMHs) and also for their utility as templates for modeling other IMPs with the postulated seven-helix bundle topology. Toward this purpose, the seven helices of bR have been studied by molecular dynamics simulation in this study. The suitability of using the backbone-dependent rotamer library of side-chain conformations arrived at from the data base of globular protein structures in the case TMHs has been tested by another set of 7 helix simulations with the side-chain orientations taken from this library. The influence of the residue's net charge on the helix stability was examined by simulating the helices III, IV, and VI (from both of the above sets of helices) with zero net charge on the side chains. The results of these 20 simulations demonstrate in general the stability of the isolated helices of bR in conformity with the two-stage hypothesis of IMP folding. However, the helices I, II, V, and VII are more stable than the other three helices. The helical nature of certain regions of III, IV, and VI are influenced by factors such as the net charge and orientation of several residues. It is seen that the residues Arg, Lys, Asp, and Glu (charged residues), and Ser, Thr, Gly, and Pro, play a crucial role in the stability of the helices of bR. The backbone-dependent rotamer library for the side chains is found to be suitable for the study of TMHs in IMP.
细菌视紫红质(bR)仍然是研究整合膜蛋白(IMP)的一个经过验证的试验场。研究bR单个螺旋的稳定性很重要,因为据推测它们以独立稳定的跨膜螺旋(TMH)形式存在,而且它们还可作为具有假定七螺旋束拓扑结构的其他IMP建模的模板。为此,本研究通过分子动力学模拟研究了bR的七个螺旋。在另一组7螺旋模拟中,测试了使用从球状蛋白质结构数据库得出的侧链构象的主链依赖旋转异构体库来研究TMH的适用性,这些模拟中的侧链取向取自该库。通过模拟侧链净电荷为零的螺旋III、IV和VI(来自上述两组螺旋),研究了残基净电荷对螺旋稳定性的影响。这20次模拟的结果总体上证明了bR分离螺旋的稳定性符合IMP折叠的两阶段假说。然而,螺旋I、II、V和VII比其他三个螺旋更稳定。螺旋III、IV和VI某些区域的螺旋性质受几个残基的净电荷和取向等因素影响。可以看出,精氨酸、赖氨酸、天冬氨酸和谷氨酸(带电荷残基)以及丝氨酸、苏氨酸、甘氨酸和脯氨酸等残基在bR螺旋的稳定性中起关键作用。发现用于侧链的主链依赖旋转异构体库适用于研究IMP中的TMH。