Fisher Lillian E, Engelman Donald M, Sturgis James N
Yale University, Department of Molecular Biophysics and Biochemistry, New Haven, Connecticut 06520-8114, USA.
Biophys J. 2003 Nov;85(5):3097-105. doi: 10.1016/S0006-3495(03)74728-6.
We have examined the role of the environment on the interactions between transmembrane helices using, as a model system, the dimerization of the glycophorin A transmembrane helix. In this study we have focused on micellar environments and have examined a series of detergents that include a range of alkyl chain lengths, combined with ionic, zwitterionic, and nonionic headgroups. For each we have measured how the apparent equilibrium constant depends on the detergent concentration. In two detergents we also measured the thermal sensitivity of the equilibrium constant, from which we derive the van't Hoff enthalpy and entropy. We show that several simple models are inadequate for explaining our results; however, models that include the effect of detergent concentration on detergent binding are able to account for our measurements. Our analysis suggests that the effects of detergents on helix association are due to a pair of opposing effects: an enthalpic effect, which drives association as the detergent concentration is increased and which is sensitive to the chemical nature of the detergent headgroup, opposed by an entropic effect, which drives peptide dissociation as the detergent concentration is raised. Our results also indicate that the monomer-monomer interface is relatively hydrophilic and that association within detergent micelles is driven by the enthalpy change. The wide variations in glycophorin a dimmer, stability with the detergent used, together with the realization that this results from the balance between two opposing effects, suggests that detergents might be selected that drive association rather than dissociation of peptide dimers.
我们以糖蛋白A跨膜螺旋的二聚化作为模型系统,研究了环境对跨膜螺旋间相互作用的影响。在本研究中,我们聚焦于胶束环境,并研究了一系列去污剂,这些去污剂包括不同烷基链长度,以及离子型、两性离子型和非离子型头部基团。对于每一种去污剂,我们都测量了表观平衡常数如何依赖于去污剂浓度。在两种去污剂中,我们还测量了平衡常数的热敏感性,由此推导出范特霍夫焓和熵。我们表明,几个简单模型不足以解释我们的结果;然而,包含去污剂浓度对去污剂结合影响的模型能够解释我们的测量结果。我们的分析表明,去污剂对螺旋缔合的影响归因于一对相反的效应:一种焓效应,随着去污剂浓度增加促使缔合,并且对去污剂头部基团的化学性质敏感,与之相对的是一种熵效应,随着去污剂浓度升高促使肽解离。我们的结果还表明,单体 - 单体界面相对亲水,并且在去污剂胶束内的缔合是由焓变驱动的。糖蛋白A二聚体稳定性随所用去污剂的广泛变化,以及认识到这是由两种相反效应之间的平衡导致的,表明可以选择能促使肽二聚体缔合而非解离的去污剂。