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人唾液粘蛋白(MUC7)衍生的O-连接模型糖肽的核磁共振分析:结构特征与糖-肽相互作用的比较

NMR analysis of human salivary mucin (MUC7) derived O-linked model glycopeptides: comparison of structural features and carbohydrate-peptide interactions.

作者信息

Naganagowda G A, Gururaja T L, Satyanarayana J, Levine M J

机构信息

Department of Oral Biology and Research Center in Oral Biology, State University of New York at Buffalo, 14214, USA.

出版信息

J Pept Res. 1999 Oct;54(4):290-310. doi: 10.1034/j.1399-3011.1999.00102.x.

Abstract

Two series of glycopeptides with mono- and disaccharides, [GalNAc and Galbeta (1-3)GalNAc] O-linked to serine and threonine at one, two or three contiguous sites were synthesized and characterized by 1H NMR. The conformational effects governed by O-glycosylation were studied and compared with the corresponding non-glycosylated counterparts using NMR, CD and molecular modelling. These model peptides encompassing the aa sequence, PAPPSSSAPPE (series I) and APPETTAAPPT (series II) were essentially derived from a 23-aa tandem repeat sequence of low molecular weight human salivary mucin (MUC7). NOEs, chemical shift perturbations and temperature coefficients of amide protons in aqueous and nonaqueous media suggest that carbohydrate moiety in threonine glycosylated peptides (series II) is in close proximity to the peptide backbone. An intramolecular hydrogen bonding between the amide proton of GalNAc or Galbeta (1-3)GalNAc and the carbonyl oxygen of the O-linked threonine residue is found to be the key structure stabilizing element. The carbohydrates in serine glycosylated peptides (series I), on the other hand, lack such intramolecular hydrogen bonding and assume a more apical position, thus allowing more rotational freedom around the O-glycosidic bond. The effect of O-glycosylation on peptide backbone is clearly reflected from the observed overall differences in sequential NOEs and CD band intensities among the various glycosylated and non-glycosylated analogues. Delineation of solution structure of these (glyco)peptides by NMR and CD revealed largely a poly L-proline type II and/or random coil conformation for the peptide core. Typical peptide fragments of tandem repeat sequence of mucin (MUC7) showing profound glycosylation effects and distinct differences between serine and threonine glycosylation as observed in the present investigation could serve as template for further studies to understand the multifunctional role played by mucin glycoproteins.

摘要

合成了两类分别带有单糖和双糖的糖肽,这些糖肽通过O-连接分别在丝氨酸和苏氨酸的一个、两个或三个相邻位点连接了N-乙酰半乳糖胺(GalNAc)和β-半乳糖(1-3)N-乙酰半乳糖胺(Galβ(1-3)GalNAc),并通过¹H NMR进行了表征。利用核磁共振(NMR)、圆二色光谱(CD)和分子建模研究了O-糖基化所产生的构象效应,并与相应的非糖基化类似物进行了比较。这些包含氨基酸序列PAPPSSSAPPE(系列I)和APPETTAAPPT(系列II)的模型肽基本上源自低分子量人唾液粘蛋白(MUC7)的一个23个氨基酸的串联重复序列。在水性和非水性介质中,酰胺质子的核Overhauser效应(NOEs)、化学位移扰动和温度系数表明,苏氨酸糖基化肽(系列II)中的碳水化合物部分与肽主链紧密相邻。发现GalNAc或Galβ(1-3)GalNAc的酰胺质子与O-连接的苏氨酸残基的羰基氧之间存在分子内氢键,这是关键的结构稳定元素。另一方面,丝氨酸糖基化肽(系列I)中的碳水化合物缺乏这种分子内氢键,并且处于更顶端的位置,从而允许围绕O-糖苷键有更多的旋转自由度。各种糖基化和非糖基化类似物之间在连续NOEs和CD带强度上观察到的总体差异清楚地反映了O-糖基化对肽主链的影响。通过NMR和CD对这些(糖)肽的溶液结构进行的描绘在很大程度上揭示了肽核心为多聚脯氨酸II型和/或无规卷曲构象。本研究中观察到的粘蛋白(MUC7)串联重复序列的典型肽片段显示出深刻地糖基化效应以及丝氨酸和苏氨酸糖基化之间的明显差异,这可以作为进一步研究的模板,以了解粘蛋白糖蛋白所发挥的多功能作用。

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