Chatterjee S, Cleveland T, Shi W Y, Inokuchi J, Radin N S
Johns Hopkins University, School of Medicine, Baltimore, MD 21287-3654, USA.
Glycoconj J. 1996 Jun;13(3):481-6. doi: 10.1007/BF00731481.
We have studied the effects of D-threo-1-phenyl-2-decanoylamino-3-morpholino-1-propanol (D-PDMP) and its L-enantiomer on glycosphingolipids in cultured normal human kidney proximal tubular cells. We found that D-PDMP exerted a concentration-dependent reduction in the metabolic labelling and cellular levels of glucosylceramide (GlcCer), lactosylceramide (LacCer), and the globo-series glycosphingolipids, GbOSe3Cer and GbOse4Cer. It also directly inhibited the activity of UDP-glucose:ceramide beta 1--> 4-glucosyltransferase (GlcT-1) and UDP-galactose: GlcCer beta 1-->4 galactosyltransferase (GalT-2). In contrast, L-PDMP had opposite effects on the metabolic labelling of GlcCer, LacCer, and GbOse3Cer. The levels of GlcCer and LacCer were increased, while the labelling and level of GbOse4Cer were strongly reduced. Purified GalT-2 from human kidney was inhibited by D-PDMP and stimulated by L-PDMP. It appears likely that the different glycosphingolipid glycosyltransferases possess similar binding sites for the ceramide moiety, which are blocked by binding to D-PDMP and, in the case of GbOse4Cer synthase, by L-PDMP as well. The stimulatory effects of L-PDMP on GlcCer and LacCer synthases may be the result of binding to a modulatory site on the glycosyltransferases; in intact cells, the enzyme-analog complex may afford protection against the normal catabolic inactivation of the enzymes.
我们研究了D-苏式-1-苯基-2-癸酰氨基-3-吗啉代-1-丙醇(D-PDMP)及其L-对映体对培养的正常人肾近端小管细胞中糖鞘脂的影响。我们发现,D-PDMP对葡萄糖神经酰胺(GlcCer)、乳糖神经酰胺(LacCer)以及球系列糖鞘脂GbOSe3Cer和GbOse4Cer的代谢标记和细胞水平产生浓度依赖性降低作用。它还直接抑制UDP-葡萄糖:神经酰胺β1→4-葡萄糖基转移酶(GlcT-1)和UDP-半乳糖:GlcCerβ1→4半乳糖基转移酶(GalT-2)的活性。相比之下,L-PDMP对GlcCer、LacCer和GbOse3Cer的代谢标记有相反的影响。GlcCer和LacCer的水平升高,而GbOse4Cer的标记和水平则大幅降低。从人肾中纯化的GalT-2受到D-PDMP的抑制,并受到L-PDMP的刺激。不同的糖鞘脂糖基转移酶似乎对神经酰胺部分具有相似的结合位点,这些位点会因与D-PDMP结合而被阻断,对于GbOse4Cer合酶而言,也会因与L-PDMP结合而被阻断。L-PDMP对GlcCer和LacCer合酶的刺激作用可能是由于与糖基转移酶上的调节位点结合所致;在完整细胞中,酶-类似物复合物可能提供保护,防止酶的正常分解代谢失活。