Goldberg E M, Lester D S, Borchardt D B, Zidovetzki R
Department of Biology, University of California, Riverside 92521, USA.
Biophys J. 1995 Sep;69(3):965-73. doi: 10.1016/S0006-3495(95)79970-2.
The effects of five diacylglycerols (DAGs), diolein, 1-stearoyl,2-arachidonoyl-sn-glycerol, dioctanoylglycerol, 1-oleoyl,2-sn-acetylglycerol, and dipalmitin (DP), on the structure of lipid bilayers composed of mixtures of phosphatidylcholine and phosphatidylserine (4:1 mol/mol) were examined by 2H nuclear magnetic resonance (NMR). Dipalmitoylphosphatidylcholine deuterated at the alpha- and beta-positions of the choline moiety was used to probe the surface region of the membranes. Addition of each DAG except DP caused a continuous decrease in the beta-deuteron quadrupole splittings and a concomitant increase in the alpha-deuteron splittings indicating that DAGs induce a conformational change in the phosphatidylcholine headgroup. Additional evidence of conformational change was found at high DAG concentrations (> or = 20 mol%) where the alpha-deuteron peaks became doublets indicating that the two alpha-deuterons were not equivalent. The changes induced by DP were consistent with the lateral phase separation of the bilayers into gel-like and fluid-like domains with the phosphatidylcholine headgroups in the latter phase being virtually unaffected by DP. The DAG-induced changes in alpha-deuteron splittings were found to correlate with DAG-enhanced protein kinase C (PK-C) activity, suggesting that the DAG-induced conformational changes of the phosphatidylcholine headgroups are either directly or indirectly related to a mechanism of PK-C activation. 2H NMR relaxation measurements showed significant increase of the spin-lattice relaxation times for the region of the phosphatidylcholine headgroups, induced by all DAGs except DP. However, this effect of DAGs did not correlate with the DAG-induced activation of PK-C.
通过2H核磁共振(NMR)研究了五种二酰基甘油(DAG),即二油精、1-硬脂酰-2-花生四烯酰-sn-甘油、二辛酰甘油、1-油酰-2-sn-乙酰甘油和二棕榈精(DP)对由磷脂酰胆碱和磷脂酰丝氨酸混合物(4:1摩尔/摩尔)组成的脂质双层结构的影响。使用在胆碱部分的α和β位置氘代的二棕榈酰磷脂酰胆碱来探测膜的表面区域。除DP外,每种DAG的添加都会导致β-氘核四极分裂持续下降,同时α-氘核分裂增加,这表明DAG会诱导磷脂酰胆碱头部基团发生构象变化。在高DAG浓度(≥20摩尔%)下发现了构象变化的额外证据,此时α-氘核峰变成双峰,表明两个α-氘核不等价。DP引起的变化与双层膜横向相分离成凝胶状和流体状区域一致,后者区域的磷脂酰胆碱头部基团实际上不受DP影响。发现DAG诱导的α-氘核分裂变化与DAG增强的蛋白激酶C(PK-C)活性相关,这表明DAG诱导的磷脂酰胆碱头部基团构象变化与PK-C激活机制直接或间接相关。2H NMR弛豫测量表明,除DP外,所有DAG诱导的磷脂酰胆碱头部基团区域的自旋晶格弛豫时间显著增加。然而,DAG的这种作用与DAG诱导的PK-C激活无关。