Ferraz Maria J, Marques André R A, Appelman Monique D, Verhoek Marri, Strijland Anneke, Mirzaian Mina, Scheij Saskia, Ouairy Cécile M, Lahav Daniel, Wisse Patrick, Overkleeft Herman S, Boot Rolf G, Aerts Johannes M
Department of Medical Biochemistry, Academic Medical Center, Amsterdam, The Netherlands.
Department of Medical Biochemistry, Leiden Institute of Chemistry, Leiden University, The Netherlands.
FEBS Lett. 2016 Mar;590(6):716-25. doi: 10.1002/1873-3468.12104. Epub 2016 Mar 3.
Glycosphingoid bases are elevated in inherited lysosomal storage disorders with deficient activity of glycosphingolipid catabolizing glycosidases. We investigated the molecular basis of the formation of glucosylsphingosine and globotriaosylsphingosine during deficiency of glucocerebrosidase (Gaucher disease) and α-galactosidase A (Fabry disease). Independent genetic and pharmacological evidence is presented pointing to an active role of acid ceramidase in both processes through deacylation of lysosomal glycosphingolipids. The potential pathophysiological relevance of elevated glycosphingoid bases generated through this alternative metabolism in patients suffering from lysosomal glycosidase defects is discussed.
在糖鞘脂分解糖苷酶活性缺乏的遗传性溶酶体贮积症中,鞘糖脂碱基会升高。我们研究了在葡萄糖脑苷脂酶缺乏(戈谢病)和α-半乳糖苷酶A缺乏(法布里病)期间葡萄糖神经酰胺和球三糖神经酰胺形成的分子基础。独立的遗传学和药理学证据表明,酸性神经酰胺酶通过溶酶体糖鞘脂的脱酰作用在这两个过程中发挥积极作用。本文讨论了溶酶体糖苷酶缺陷患者通过这种替代代谢产生的鞘糖脂碱基升高的潜在病理生理相关性。