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二乙炔脂质微结构:通过X射线衍射进行结构表征并与饱和磷脂酰胆碱类似物进行比较

Diacetylenic lipid microstructures: structural characterization by X-ray diffraction and comparison with the saturated phosphatidylcholine analogue.

作者信息

Caffrey M, Hogan J, Rudolph A S

机构信息

Department of Chemistry, Ohio State University, Columbus 43210.

出版信息

Biochemistry. 1991 Feb 26;30(8):2134-46. doi: 10.1021/bi00222a018.

Abstract

Thermotropic and lyotropic mesomorphism in the polymerizable lecithin 1,2-ditricosa-10,12-diynoyl-sn-glycero-3-phosphocholine and its saturated analogue, 1,2-ditricosanoyl-sn-glycero-3-phosphocholine, has been investigated by wide- and low-angle X-ray diffraction of both powder and oriented samples and by differential scanning calorimetry. Previous studies have shown that the hydrated diacetylenic lipid forms novel microstructures (tubules and stacked bilayer sheets) in its low-temperature phase. The diffraction results indicate that at low temperatures fully hydrated tubules and sheets have an identical lamellar repeat size (d001 = 66.4 A) and crystalline-like packing of the acyl chains. Chain packing in the lamellar crystalline phase is hydration independent. A model for the polymerizable lecithin with (1) fully extended all-trans methylene segments, (2) a long-axis tilt of 32 degrees, and (3) minimal chain interdigitation seems most reasonable on energetic grounds, is consistent with the diffraction data (to 3.93-A resolution), and is likely to support facile polymerization. Above the chain "melting" transition the lamellar repeat of the polymerizable lipid increases to 74 A. The conformational similarity between tubules, sheets, and the dry powder is corroborated by calorimetry, which reveals a cooling exotherm at the same temperature where tubules form upon cooling hydrated sheets. The data suggest that although a high degree of conformational order is a pertinent feature of tubules, this character alone is not sufficient to account for tubule formation. The conformation of the corresponding saturated phosphatidylcholine appears to be similar to that of other saturated phosphatidylcholines in the lamellar gel phase. Furthermore, above the main transition temperature, the dry, saturated lipid shows evidence of a P delta phase (112 degrees C), whereas the diacetylenic lipid appears to exhibit a centered rectangular phase, R alpha (55 degrees C).

摘要

通过对粉末和取向样品进行广角和小角X射线衍射以及差示扫描量热法,研究了可聚合卵磷脂1,2 - 二十二碳 - 10,12 - 二炔酰 - sn - 甘油 - 3 - 磷酸胆碱及其饱和类似物1,2 - 二十二碳酰 - sn - 甘油 - 3 - 磷酸胆碱的热致和溶致液晶态。先前的研究表明,水合二乙炔脂质在其低温相中形成了新型微观结构(微管和堆叠双层片)。衍射结果表明,在低温下,完全水合的微管和片层具有相同的层状重复尺寸(d001 = 66.4 Å)以及酰基链的类晶态堆积。层状结晶相中的链堆积与水合作用无关。基于能量原因,具有(1)完全伸展的全反式亚甲基链段、(2)32度的长轴倾斜以及(3)最小链交指的可聚合卵磷脂模型似乎最为合理,与衍射数据(至3.93 Å分辨率)一致,并且可能支持易于聚合。在链“熔化”转变温度以上,可聚合脂质的层状重复增加到74 Å。量热法证实了微管、片层和干粉之间的构象相似性,该方法揭示了在冷却水合片层时形成微管的相同温度下的冷却放热峰。数据表明,尽管高度的构象有序是微管的一个相关特征,但仅这一特征不足以解释微管的形成。相应的饱和磷脂酰胆碱在层状凝胶相中的构象似乎与其他饱和磷脂酰胆碱相似。此外,在主要转变温度以上,干燥的饱和脂质显示出Pδ相(112℃)的证据,而二乙炔脂质似乎呈现出中心矩形相,Rα(55℃)。

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