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N-糖基化对血清IgM尾段的构象影响。

The conformational effects of N-glycosylation on the tailpiece from serum IgM.

作者信息

Wormald M R, Wooten E W, Bazzo R, Edge C J, Feinstein A, Rademacher T W, Dwek R A

机构信息

Department of Biochemistry, University of Oxford, England.

出版信息

Eur J Biochem. 1991 May 23;198(1):131-9. doi: 10.1111/j.1432-1033.1991.tb15995.x.

Abstract

1H-NMR spectroscopy has been used to study the conformation and dynamics of the isolated tailpiece from human serum immunoglobulin M, a 22-residue peptide containing a single asparagine glycosylation site. The peptide is isolated as a set of glycoforms, varying only in the sequence of the oligosaccharide attached at the glycosylation site. The oligosaccharides present have the general formula (Man)n(GlcNAc)2, with 45% having n = 6, 45% having n = 8 and 10% having n = 7 and/or 9. They have been identified and their NMR parameters compared to those found for the isolated oligosaccharides in free solution. The conformation and dynamics of the peptide component have also been studied, using NOE data and hydrogen-exchange experiments, and the results compared to those obtained from the aglycosyl peptide of the same sequence. The presence of the peptide is found to have no measurable effect on the conformation of the oligosaccharides. However, the presence of oligosaccharide causes a decrease in the conformational mobility of the backbone and sidechains of the peptide in the region of the glycosylation site. This is proposed to result from interactions between the oligosaccharide core and the amino acid side chains. Further, the conformation of the N-glycosidic linkage has been shown to be both rigid and planar. Thus, the conformational space available to an N-linked oligosaccharide in a glycoprotein relative to the protein may depend to a large extent upon the flexibility of the asparagine side chain. Various roles for the different glycoforms of the tail peptide are discussed.

摘要

1H-核磁共振光谱已被用于研究人血清免疫球蛋白M分离出的尾肽的构象和动力学,该尾肽是一个含有单个天冬酰胺糖基化位点的22个残基的肽段。该肽段以一组糖型形式被分离出来,仅在糖基化位点连接的寡糖序列上有所不同。所存在的寡糖通式为(Man)n(GlcNAc)2,其中45%的n = 6,45%的n = 8,10%的n = 7和/或9。它们已被鉴定出来,其核磁共振参数与在游离溶液中分离出的寡糖的参数进行了比较。还利用核Overhauser效应(NOE)数据和氢交换实验研究了肽段组分的构象和动力学,并将结果与从相同序列的无糖基肽获得的结果进行了比较。发现肽段的存在对寡糖的构象没有可测量的影响。然而,寡糖的存在导致糖基化位点区域肽段主链和侧链的构象流动性降低。这被认为是由寡糖核心与氨基酸侧链之间的相互作用导致的。此外,N-糖苷键的构象已被证明是刚性和平坦的。因此,相对于蛋白质而言,糖蛋白中N-连接寡糖可利用的构象空间可能在很大程度上取决于天冬酰胺侧链的灵活性。文中讨论了尾肽不同糖型的各种作用。

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