Marcotte Isabelle, Dufourc Erick J, Ouellet Marise, Auger Michèle
Département de Chimie, Centre de Recherche en Sciences et Ingénierie des Macromolécules, Université Laval, Québec, Québec, Canada, G1K 7P4.
Biophys J. 2003 Jul;85(1):328-39. doi: 10.1016/S0006-3495(03)74477-4.
The interaction of the neuropeptide methionine-enkephalin (Menk) with bicelles was investigated by solid-state NMR. Bicelles composed of dimyristoylphosphatidylcholine (DMPC) and dicaproylphosphatidylcholine (DCPC) were modified to investigate the effect of the lipid headgroup and electrostatic charges on the association with Menk. A total of 10 mol % of DMPC was replaced by zwitterionic phosphatidylethanolamine (DMPE), anionic phosphatidylglycerol (DMPG), or phosphatidylserine (DMPS). The preparation of DMPE-doped bicelles (Bic/PE) is reported for the first time. The (31)P and (2)H NMR results revealed changes in the lipid dynamics when Menk interacts with the bicellar systems. (2)H NMR experiments showed a disordering effect of Menk on the lipid chains in all the bicelles except Bic/PG, whereas the study of the choline headgroups indicated a decreased order of the lipids only in Bic/PE and Bic/PG. Our results suggest that the insertion depth of Menk into bicelles is modulated by their composition, more specifically by the balance between hydrophobic and electrostatic interactions. Menk would be buried at the lipid polar/apolar interface, the depth of penetration into the hydrophobic membrane core following the scaling Bic > Bic/PE > Bic/PS at the slightly acidic pH used in this study. The peptide would not insert into the bilayer core of Bic/PG and would rather remain at the surface.
通过固态核磁共振研究了神经肽甲硫氨酸脑啡肽(Menk)与双分子层的相互作用。由二肉豆蔻酰磷脂酰胆碱(DMPC)和二己酰磷脂酰胆碱(DCPC)组成的双分子层经过修饰,以研究脂质头部基团和静电荷对与Menk结合的影响。总共10摩尔%的DMPC被两性离子磷脂酰乙醇胺(DMPE)、阴离子磷脂酰甘油(DMPG)或磷脂酰丝氨酸(DMPS)取代。首次报道了DMPE掺杂双分子层(Bic/PE)的制备。(31)P和(2)H核磁共振结果揭示了Menk与双分子层系统相互作用时脂质动力学的变化。(2)H核磁共振实验表明,除了Bic/PG外,Menk对所有双分子层中的脂质链都有无序化作用,而对胆碱头部基团的研究表明,只有在Bic/PE和Bic/PG中脂质的有序度降低。我们的结果表明,Menk插入双分子层的深度受其组成的调节,更具体地说是受疏水相互作用和静电相互作用之间平衡的调节。在本研究使用的微酸性pH条件下,Menk将被埋在脂质极性/非极性界面处,按照Bic > Bic/PE > Bic/PS的顺序渗透到疏水膜核心的深度。该肽不会插入Bic/PG的双层核心,而是会留在表面。