Bartoszewicz Z P, Noronha A B, Fujita N, Sato S, Bö L, Trapp B D, Quarles R H
Myelin and Brain Development Section, NINDS, National Institutes of Health, Bethesda, Maryland, USA.
J Neurosci Res. 1995 May 1;41(1):27-38. doi: 10.1002/jnr.490410105.
The relative expression of large (L) and small (S) isoforms of the myelin-associated glycoprotein (MAG) and their glycosylation were compared in developing spinal cord of quaking and control mice. Using antisera specific for L- and S-MAG, respectively, it was shown that S-MAG is the principal isoform in quaking mice at all ages between 13 and 72 days, although L-MAG was just detectable by western blotting at the early ages. Both L- and S-MAG have higher apparent molecular weights in quaking mice than in controls. Experiments involving lectin binding and glycosidase treatment demonstrated that the higher molecular weight of MAG in the quaking mutant was due to a higher content of N-acetylneuraminic acid residues linked alpha 2-3 to galactose as well as to more branching of oligosaccharide moieties indicated by a higher content of subterminal galactose residues. The total sialic acid measured by HPAE-chromatography in purified quaking MAG was 40% higher than in control MAG. By contrast, quaking MAG contained less of the adhesion-related, HNK-1 carbohydrate epitope. Another difference was that a lower molecular weight form of MAG with predominantly high mannose oligosaccharides was prominent in young quaking mice, but not in controls. The abnormalities of MAG expression related to splicing of its mRNA and glycosylation may contribute to the myelin pathology in quaking mutants.
在震颤小鼠和对照小鼠发育中的脊髓中,比较了髓鞘相关糖蛋白(MAG)的大(L)和小(S)异构体的相对表达及其糖基化情况。分别使用针对L - MAG和S - MAG的抗血清,结果显示,在13至72天的所有年龄段,S - MAG都是震颤小鼠中的主要异构体,尽管在早期通过蛋白质印迹法仅可检测到L - MAG。与对照小鼠相比,震颤小鼠中的L - MAG和S - MAG的表观分子量都更高。涉及凝集素结合和糖苷酶处理的实验表明,震颤突变体中MAG分子量较高是由于以α2 - 3连接到半乳糖的N - 乙酰神经氨酸残基含量较高,以及由末端半乳糖残基含量较高所表明的寡糖部分的更多分支。通过高效阴离子交换色谱法测定,纯化的震颤MAG中的总唾液酸比对照MAG高40%。相比之下,震颤MAG含有较少的与黏附相关的HNK - 1碳水化合物表位。另一个差异是,主要具有高甘露糖寡糖的较低分子量形式的MAG在幼年震颤小鼠中很突出,但在对照小鼠中则不然。与MAG mRNA剪接和糖基化相关的MAG表达异常可能导致震颤突变体中的髓鞘病变。