Li S, Wang G, Lin H, Huang C H
Department of Biochemistry and Molecular Genetics, University of Virginia School of Medicine, Charlottesville, Virginia 22908, USA.
J Biol Chem. 1998 Jul 24;273(30):19009-18. doi: 10.1074/jbc.273.30.19009.
We have semi-synthesized 18 species of mixed chain phosphatidylethanolamines (PE) in which the sn-1 acyl chain is derived from stearic, arachidic, and behenic acids, and the sn-2 acyl chain is originated from cis,cis-octadecadienoic and cis, cis-eicosadienoic acids with the two methylene-interrupted double bonds located at various positions. These PEs constituting the bilayers in the aqueous dispersion were subjected to differential scanning calorimetric experiments. The Tm values associated with the gel-to-liquid crystalline phase transitions for these PEs are found to be significantly smaller than those of the saturated counterparts. Moreover, the magnitude of the Tm-lowering effect of acyl chain diunsaturation depends critically on the positions of the two methylene-interrupted cis double bonds in the sn-2 acyl chain. Specifically, if the sn-2 acyl chain is derived from cis, cis-octadecadienoic acid, the Tm-lowering effect has the following decreasing order: Delta9,12 > Delta6,9 > Delta12,15. For cis, cis-eicosadienoyl acyl chain, the Tm-lowering effect is stronger in the order of Delta10,13 > Delta11,14 > Delta8,11 > Delta5,8 > Delta14,17. Finally, a refined molecular model is presented that can adequately explain the Tm-lowering effect of sn-2 acyl chain diunsaturation. Moreover, this same refined molecular model can also be invoked to better interpret the Tm-lowering effect observed for sn-1 saturated/sn-2 monoenoic PE.
我们半合成了18种混合链磷脂酰乙醇胺(PE),其中sn-1酰基链衍生自硬脂酸、花生酸和山嵛酸,sn-2酰基链源自顺式,顺式-十八碳二烯酸和顺式,顺式-二十碳二烯酸,两个亚甲基间断双键位于不同位置。将这些构成水分散体中双层的PE进行差示扫描量热实验。发现这些PE的凝胶-液晶相转变相关的Tm值明显小于饱和对应物的Tm值。此外,酰基链双不饱和对Tm降低效应的大小关键取决于sn-2酰基链中两个亚甲基间断顺式双键的位置。具体而言,如果sn-2酰基链源自顺式,顺式-十八碳二烯酸,Tm降低效应具有以下递减顺序:Δ9,12 > Δ6,9 > Δ12,15。对于顺式,顺式-二十碳二烯酰基链,Tm降低效应按Δ10,13 > Δ11,14 > Δ8,11 > Δ5,8 > Δ14,17的顺序更强。最后,提出了一个精细的分子模型,该模型可以充分解释sn-2酰基链双不饱和的Tm降低效应。此外,这个相同的精细分子模型也可用于更好地解释sn-1饱和/sn-2单烯PE观察到的Tm降低效应。