首页> 美国卫生研究院文献>The EMBO Journal >Tissue-specific N-glycosylation site-specific oligosaccharide patterns and lentil lectin recognition of rat Thy-1.
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Tissue-specific N-glycosylation site-specific oligosaccharide patterns and lentil lectin recognition of rat Thy-1.

机译:大鼠Thy-1的组织特异性N-糖基化位点特异性寡糖模式和小扁豆凝集素识别。

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摘要

To examine the extent to which protein structure and tissue-type influence glycosylation, we have determined the oligosaccharide structures at each of the three glycosylation sites (Asn-23, 74 and 98) of the cell surface glycoprotein Thy-1 isolated from rat brain and thymus. The results show that there is tissue-specificity of glycosylation and that superimposed on this is a significant degree of site-specificity. On the basis of the site distribution of oligosaccharides, we find that no Thy-1 molecules are in common between the two tissues despite the amino acid sequences being identical. We suggest, therefore, that by controlling N-glycosylation a tissue creates an unique set of glycoforms (same polypeptide but with oligosaccharides that differ either in sequence or disposition). The structures at each of the three sites were also determined for the thymocyte Thy-1 that binds to lentil lectin (Thy-1 L+) and for that which does not (Thy-1 L-). Segregation of intact thymus Thy-1 into two distinct sets of glycoforms by lentil lectin was found to be due to the structures at site 74. Analysis of oligosaccharide structures at the 'passenger' sites (23 and 98) suggests that either Thy-1 L+ and Thy-1 L- molecules are made in different cell-types or that the biosynthesis of oligosaccharides at one site is influenced by the glycosylation at other sites.
机译:为了检查蛋白质结构和组织类型影响糖基化的程度,我们确定了从大鼠脑和大脑中分离出的细胞表面糖蛋白Thy-1的三个糖基化位点(Asn-23、74和98)的每个寡糖结构。胸腺。结果表明存在糖基化的组织特异性,并且叠加在其上的位点特异性显着程度。根据寡糖的位点分布,我们发现尽管氨基酸序列相同,但两个组织之间没有Thy-1分子共有。因此,我们建议,通过控制N-糖基化,组织会形成一组独特的糖型(相同的多肽,但寡糖的序列或排列方式有所不同)。还确定了与小扁豆凝集素结合的胸腺细胞Thy-1(Thy-1 L +)和不结合扁豆凝集素的Thy-1(Thy-1 L-)的三个位点的结构。发现扁豆凝集素将完整的胸腺Thy-1分离成两组不同的糖型是由于位点74的结构所致。分析“乘客”位点(23和98)的寡糖结构表明,Thy-1 L +并且Thy-1 L-分子是在不同的细胞类型中产生的,或者一个位点的寡糖的生物合成受另一位点的糖基化影响。

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