Lipid Metabolism Unit and Center for Computational and Integrative Biology, Massachusetts General Hospital, Harvard Medical School, Boston, MA 02114.
J Lipid Res. 2014 Mar;55(3):493-503. doi: 10.1194/jlr.M044941. Epub 2013 Nov 30.
ABCA12 mutations disrupt the skin barrier and cause harlequin ichthyosis. We previously showed Abca12(-/-) skin has increased glucosylceramide (GlcCer) and correspondingly lower amounts of ceramide (Cer). To examine why loss of ABCA12 leads to accumulation of GlcCer, de novo sphingolipid synthesis was assayed using [(14)C]serine labeling in ex vivo skin cultures. A defect was found in β-glucocerebrosidase (GCase) processing of newly synthesized GlcCer species. This was not due to a decline in GCase function. Abca12(-/-) epidermis had 5-fold more GCase protein (n = 4, P < 0.01), and a 5-fold increase in GCase activity (n = 3, P < 0.05). As with Abca12(+/+) epidermis, immunostaining in null skin showed a typical interstitial distribution of the GCase protein in the Abca12(-/-) stratum corneum. Hence, we tested whether the block in GlcCer conversion could be circumvented by topically providing GlcCer. This approach restored up to 15% of the lost Cer products of GCase activity in the Abca12(-/-) epidermis. However, this level of barrier ceramide replacement did not significantly reduce trans-epidermal water loss function. Our results indicate loss of ABCA12 function results in a failure of precursor GlcCer substrate to productively interact with an intact GCase enzyme, and they support a model of ABCA12 function that is critical for transporting GlcCer into lamellar bodies.
ABCA12 突变破坏皮肤屏障并导致丑角鱼鳞病。我们之前曾表明 Abca12(-/-)皮肤中的葡萄糖神经酰胺 (GlcCer) 增加,相应地神经酰胺 (Cer) 减少。为了研究为什么 ABCA12 的缺失会导致 GlcCer 的积累,我们使用 [(14)C]丝氨酸标记在体外皮肤培养物中检测了从头合成鞘脂的情况。发现β-葡萄糖脑苷脂酶 (GCase) 对新合成的 GlcCer 种类的加工存在缺陷。这不是由于 GCase 功能下降所致。Abca12(-/-) 表皮中的 GCase 蛋白增加了 5 倍(n = 4,P < 0.01),GCase 活性增加了 5 倍(n = 3,P < 0.05)。与 Abca12(+/+) 表皮一样,在 Abca12(-/-) 角质层中,免疫染色显示 GCase 蛋白的典型间质分布。因此,我们测试了通过局部给予 GlcCer 是否可以避免 GlcCer 转化受阻。这种方法使 Abca12(-/-) 表皮中 GCase 活性丧失的 Cer 产物恢复了高达 15%。然而,这种水平的屏障神经酰胺替代并没有显著降低经表皮水分流失功能。我们的结果表明 ABCA12 功能的丧失导致前体 GlcCer 底物不能与完整的 GCase 酶有效相互作用,并且它们支持 ABCA12 功能的模型,该模型对于将 GlcCer 转运到板层小体至关重要。