Chou D K, Suzuki Y, Jungalwala F B
Department of Biomedical Sciences, E.K. Shriver Center for Mental Retardation, Waltham, MA 02254, USA.
Glycoconj J. 1996 Apr;13(2):295-305. doi: 10.1007/BF00731504.
The following neolacto glycolipids were identified and their developmental expression was studied in the rat cerebral cortex and cerebellum: Fuc alpha 1-3IIInLcOse4Cer,Fuc alpha 1-3VnLcOse6Cer and (Fuc)2 alpha 1-3III,3VnLcOse6Cer, as well as acidic glycolipids, NeuAc alpha 2-3IVnLcOse4Cer [nLM1], (NeuAc)2 alpha 2-3IVnLcOse4Cer [nLD1], O-acetyl (NeuAc)2 alpha 2-3IVnLcOse4Cer [OAc-nLD1] and their higher neolactosaminyl homologues NeuAc alpha 2-3VlnLcOse6Cer [nHM1] and (NeuAc)2 alpha 2-3VlnLcOse6Cer [nHD1]. These glycolipids were expressed in the cerebral cortex only during embryonic stages and disappeared postnatally. This loss was ascribed to the down regulation of the synthesis of the key precursor LcOse3Cer which is synthesized by the enzyme lactosylceramide: N-acetylglucosaminyl transferase. On the other hand in the cerebellum, these glycolipids increased with postnatal development due to increasing availability of LcOse3Cer. In the cerebellum, only nLM1 and fucosyl-neolactoglycolipids declined after postnatal day 10-15, perhaps due to regulation by other glycosyltransferases. Also, in the cerebellum, nLD1 and nHD1 were shown to be specifically associated with Purkinje cells and their dendrites in the molecular layer and with their axon terminals in the deep cerebellar nuclei, similar to other neolactoglycolipids shown previously.
鉴定出了以下新乳糖神经节苷脂,并研究了它们在大鼠大脑皮层和小脑中的发育表达情况:岩藻糖α1-3III型乳糖神经节四糖神经酰胺、岩藻糖α1-3V型乳糖神经节六糖神经酰胺和(岩藻糖)2α1-3III,3V型乳糖神经节六糖神经酰胺,以及酸性神经节苷脂,唾液酸α2-3IV型乳糖神经节四糖神经酰胺[nLM1]、(唾液酸)2α2-3IV型乳糖神经节四糖神经酰胺[nLD1]、O-乙酰基(唾液酸)2α2-3IV型乳糖神经节四糖神经酰胺[OAc-nLD1]及其更高的新乳糖胺基同系物唾液酸α2-3V型乳糖神经节六糖神经酰胺[nHM1]和(唾液酸)2α2-3V型乳糖神经节六糖神经酰胺[nHD1]。这些神经节苷脂仅在胚胎期在大脑皮层中表达,出生后消失。这种消失归因于关键前体乳糖神经节三糖神经酰胺合成的下调,该前体由乳糖基神经酰胺:N-乙酰葡糖胺基转移酶合成。另一方面,在小脑中,由于乳糖神经节三糖神经酰胺的可用性增加,这些神经节苷脂随着出生后的发育而增加。在小脑中,仅nLM1和岩藻糖基新乳糖神经节苷脂在出生后第10 - 15天之后下降,这可能是由于其他糖基转移酶的调节。此外,在小脑中,nLD1和nHD1被证明与分子层中的浦肯野细胞及其树突以及小脑深部核团中的轴突终末特异性相关,这与之前显示的其他新乳糖神经节苷脂类似。