Fanani María Laura, Maggio Bruno
Centro de Investigaciones en Química Biológica de Córdoba (CIQUIBIC-CONICET), Departamento de Química Biológica Ranwell Caputto, Facultad de Ciencias Químicas, Universidad Nacional de Córdoba, Haya de la Torre y Medina Allende, Ciudad Universitaria, X5000HUA, Córdoba, Argentina.
Biophys Rev. 2017 Oct;9(5):601-616. doi: 10.1007/s12551-017-0298-y. Epub 2017 Aug 19.
A rather widespread idea on the functional importance of sphingolipids in cell membranes refers to the occurrence of ordered domains enriched in sphingomyelin and ceramide that are largely assumed to exist irrespective of the type of N-acyl chain in the sphingolipid. Ceramides and sphingomyelins are the simplest kind of two-chained sphingolipids and show a variety of species, depending on the fatty acyl chain length, hydroxylation, and unsaturation. Abundant evidences have shown that variations of the N-acyl chain length in ceramides and sphingomyelins markedly affect their phase state, interfacial elasticity, surface topography, electrostatics, and miscibility, and that even the usually conceived "condensed" sphingolipids and many of their mixtures may exhibit liquid-like expanded states. Their lateral miscibility properties are subtlety regulated by those chemical differences. Even between ceramides with different acyl chain length, their partial miscibility is responsible for a rich two-dimensional structural variety that impacts on the membrane properties at the mesoscale level. In this review, we will discuss the miscibility properties of ceramide, sphingomyelin, and glycosphingolipids that differ in their N-acyl or oligosaccharide chains. This work is a second part that accompanies a previous overview of the properties of membranes formed by pure ceramides or sphingomyelins, which is also included in this Special Issue.
关于鞘脂类在细胞膜中的功能重要性,一个相当普遍的观点认为,富含鞘磷脂和神经酰胺的有序结构域的存在,很大程度上被认为与鞘脂类中N - 酰基链的类型无关。神经酰胺和鞘磷脂是最简单的双链鞘脂类,根据脂肪酰基链的长度、羟基化程度和不饱和度表现出多种类型。大量证据表明,神经酰胺和鞘磷脂中N - 酰基链长度的变化显著影响它们的相态、界面弹性、表面形貌、静电作用和混溶性,甚至通常所认为的“凝聚态”鞘脂类及其许多混合物可能呈现出类似液体的膨胀状态。它们的侧向混溶性质受到这些化学差异的微妙调节。即使在具有不同酰基链长度的神经酰胺之间,它们的部分混溶性也导致了丰富的二维结构多样性,这在中尺度水平上影响膜的性质。在这篇综述中,我们将讨论在N - 酰基或寡糖链上存在差异的神经酰胺、鞘磷脂和糖鞘脂的混溶性质。这项工作是前一篇关于由纯神经酰胺或鞘磷脂形成的膜的性质综述的第二部分,该综述也包含在本期特刊中。