Laboratory of Biochemistry, Faculty of Pharmaceutical Sciences, Hokkaido University, Sapporo, Japan.
Laboratory of Biochemistry, Faculty of Pharmaceutical Sciences, Hokkaido University, Sapporo, Japan. Electronic address: mailto:
J Lipid Res. 2020 Jun;61(6):884-895. doi: 10.1194/jlr.RA120000671. Epub 2020 Apr 7.
Ceramides are the predominant lipids in the stratum corneum (SC) and are crucial components for normal skin barrier function. Although the composition of various ceramide classes in the human SC has been reported, that in mice is still unknown, despite mice being widely used as animal models of skin barrier function. Here, we performed LC/MS/MS analyses using recently available ceramide class standards to measure 25 classes of free ceramides and 5 classes of protein-bound ceramides from human and mouse SC. Phytosphingosine- and 6-hydroxy sphingosine-type ceramides, which both contain an additional hydroxyl group, were abundant in the human SC (35% and 45% of total ceramides, respectively). In contrast, in mice, phytosph-ingosine- and 6-hydroxy sphingosine-type ceramides were present at ∼1% and undetectable levels, respectively, and sphingosine-type ceramides accounted for ∼90%. In humans, ceramides containing α-hydroxy FA were abundant, whereas ceramides containing β-hydroxy or ω-hydroxy FA were abundant in mice. The hydroxylated β-carbon in β-hydroxy ceramides was in the () configuration. Genetic knockout of β-hydroxy acyl-CoA dehydratases in HAP1 cells increased β-hydroxy ceramide levels, suggesting that β-hydroxy acyl-CoA, an FA-elongation cycle intermediate in the ER, is a substrate for β-hydroxy ceramide synthesis. We anticipate that our methods and findings will help to elucidate the role of each ceramide class in skin barrier formation and in the pathogenesis of skin disorders.
神经酰胺是角质层(SC)中主要的脂质,是正常皮肤屏障功能的关键组成部分。尽管已经报道了人类 SC 中各种神经酰胺类别的组成,但在广泛用作皮肤屏障功能动物模型的小鼠中,其组成仍不清楚。在这里,我们使用最近可用的神经酰胺类标准品进行了 LC/MS/MS 分析,以测量人 SC 和鼠 SC 中的 25 种游离神经酰胺和 5 种蛋白结合神经酰胺。含有额外羟基的植物鞘氨醇型和 6-羟基鞘氨醇型神经酰胺在人 SC 中含量丰富(分别占总神经酰胺的 35%和 45%)。相比之下,在小鼠中,植物鞘氨醇型和 6-羟基鞘氨醇型神经酰胺的含量分别约为 1%和无法检测到,而神经鞘氨醇型神经酰胺则占约 90%。在人类中,含有α-羟基 FA 的神经酰胺含量丰富,而含有β-羟基或ω-羟基 FA 的神经酰胺含量丰富在小鼠中。β-羟基神经酰胺中β-碳上的羟基位于 () 构型。在 HAP1 细胞中敲除β-羟酰基辅酶 A 脱水酶增加了β-羟神经酰胺的水平,表明 ER 中 FA 延伸循环中间体β-羟酰基辅酶 A 是β-羟神经酰胺合成的底物。我们预计,我们的方法和发现将有助于阐明每个神经酰胺类别的作用在皮肤屏障形成和皮肤疾病发病机制中的作用。