Hong M, Schmidt-Rohr K, Zimmermann H
Materials Sciences Division, Lawrence Berkeley National Laboratory Berkeley, California 94720, USA.
Biochemistry. 1996 Jun 25;35(25):8335-41. doi: 10.1021/bi953083i.
This paper presents new NMR constraints on the conformation of the headgroup, glycerol backbone, and sn-2 chain of 1,2-dimyristoyl-sn-glycero-3-phosphatidylcholine (DMPC) in the liquid-crystalline bilayer. Using two-dimensional 13C-1H chemical shift correlation spectroscopy, we find significant dipolar couplings between the carboxyl carbon CO2 and the headgroup protons. This indicates that a conformation in which the DMPC headgroup and the beginning of the sn-2 chain bend toward each other is significantly populated in the fluid bilayer. The predominance of this headgroup orientation can be further confirmed by 31P-13C dipolar couplings from the literature, which constrain the glycerol G2-G3 torsion angle to be close to trans, excluding a significant presence of one of the two conformations found in the DMPC crystal. Combining and reexamining 20 known NMR couplings for the glycerol backbone and its adjacent segments of L alpha-DMPC, we find that several torsion angles and bond orientations in the core of the DMPC molecule are constrained severely and must differ from those in the crystal structure. We propose a consistent molecular model for phosphocholine lipids in the liquid-crystalline phase, with a rigid backbone in the core of the molecule, a bent-back headgroup, and increasing mobility toward the ends of the acyl chains and the headgroup.
本文提出了关于1,2-二肉豆蔻酰-sn-甘油-3-磷酸胆碱(DMPC)在液晶双层中头基、甘油主链和sn-2链构象的新的核磁共振限制条件。利用二维13C-1H化学位移相关光谱,我们发现羧基碳CO2与头基质子之间存在显著的偶极耦合。这表明在流体双层中,DMPC头基和sn-2链起始部分相互弯曲的构象大量存在。文献中的31P-13C偶极耦合进一步证实了这种头基取向的优势,该耦合将甘油G2-G3扭转角限制在接近反式,排除了DMPC晶体中发现的两种构象之一的大量存在。结合并重新审视Lα-DMPC甘油主链及其相邻片段的20种已知核磁共振耦合常数,我们发现DMPC分子核心中的几个扭转角和键取向受到严格限制,并且必须与晶体结构中的不同。我们提出了一种液晶相磷脂酰胆碱脂质分子的一致模型,分子核心有一个刚性主链,头基向后弯曲,酰基链末端和头基的流动性增加。