Kanda T, Ariga T, Yamawaki M, Yoshino H, Gu X B, Yu R K
Department of Biochemistry and Molecular Biophysics, Medical College of Virginia, Virginia Commonwealth University, Richmond, USA.
Neurochem Res. 1997 Apr;22(4):463-6. doi: 10.1023/a:1027363828172.
Bovine brain microvascular endothelial cells (BMECs) express GM3 (NeuAc) and GM3 (NeuGc) as the major gangliosides, and GM1, GD1a, GD1b, GT1b as well as sialosylparagloboside and sialosyllactosaminylparagloboside as the minor species. To investigate the metabolic basis of this ganglioside pattern, the activities of eight glycosyltransferases (GM3-, GD1a-, GD3-, LM1-, GM2 (NeuAc)-, GM2 (NeuGc)-, LacCer-, and GM1-synthases) in cultured BMECs were studied. It was found that BMECs possessed high activities of GM3- and GD1a-synthases, and low activities of GM2-, GM1-, and GD3-synthases. Thus, the present study provides evidence that endothelial cells are capable of synthesizing gangliosides in situ and that the high content of GM3 in BMEC is closely associated with high activities of GM3-synthase and low activities of GM2-, GM1-, and GD3-synthases.
牛脑微血管内皮细胞(BMECs)表达GM3(NeuAc)和GM3(NeuGc)作为主要神经节苷脂,以及GM1、GD1a、GD1b、GT1b以及唾液酸副球蛋白苷和唾液酸乳糖胺基副球蛋白苷作为次要成分。为了研究这种神经节苷脂模式的代谢基础,研究了培养的BMECs中八种糖基转移酶(GM3-、GD1a-、GD3-、LM1-、GM2(NeuAc)-、GM2(NeuGc)-、乳糖神经酰胺-和GM1-合成酶)的活性。结果发现,BMECs具有高活性的GM3-和GD1a-合成酶,以及低活性的GM2-、GM1-和GD3-合成酶。因此,本研究提供了证据表明内皮细胞能够原位合成神经节苷脂,并且BMECs中GM3的高含量与GM3-合成酶的高活性以及GM2-、GM1-和GD3-合成酶的低活性密切相关。