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N-糖基化位点蛋白质环境的统计分析:对占有率、结构和折叠的影响

Statistical analysis of the protein environment of N-glycosylation sites: implications for occupancy, structure, and folding.

作者信息

Petrescu Andrei-J, Milac Adina-L, Petrescu Stefana M, Dwek Raymond A, Wormald Mark R

机构信息

Oxford Glycobiology Institute, Department of Biochemistry, University of Oxford, Oxford OX1 3QU, U.K.

出版信息

Glycobiology. 2004 Feb;14(2):103-14. doi: 10.1093/glycob/cwh008. Epub 2003 Sep 26.

Abstract

We recently reported statistical analysis of structural data on glycosidic linkages. Here we extend this analysis to the glycan-protein linkage, and the peptide primary, secondary, and tertiary structures around N-glycosylation sites. We surveyed 506 glycoproteins in the Protein Data Bank crystallographic database, giving 2592 glycosylation sequons (1683 occupied) and generated a database of 626 nonredundant sequons with 386 occupied. Deviations in the expected amino acid composition were seen around occupied asparagines, particularly an increased occurrence of aromatic residues before the asparagine and threonine at position +2. Glycosylation alters the asparagine side chain torsion angle distribution and reduces its flexibility. There is an elevated probability of finding glycosylation sites in which secondary structure changes. An 11-class taxonomy was developed to describe protein surface geometry around glycosylation sites. Thirty-three percent of the occupied sites are on exposed convex surfaces, 10% in deep recesses and 20% on the edge of grooves with the glycan filling the cleft. A surprisingly large number of glycosylated asparagine residues have a low accessibility. The incidence of aromatic amino acids brought into close contact with the glycan by the folding process is higher than their normal levels on the surface or in the protein core. These data have significant implications for control of sequon occupancy and evolutionary selection of glycosylation sites and are discussed in relation to mechanisms of protein fold stabilization and regional quality control of protein folding. Hydrophobic protein-glycan interactions and the low accessibility of glycosylation sites in folded proteins are common features and may be critical in mediating these functions.

摘要

我们最近报道了糖苷键结构数据的统计分析。在此,我们将该分析扩展至聚糖 - 蛋白质连接,以及N - 糖基化位点周围的肽一级、二级和三级结构。我们在蛋白质数据库晶体学数据库中调查了506种糖蛋白,得到2592个糖基化序列(1683个被占据),并生成了一个包含626个非冗余序列(386个被占据)的数据库。在被占据的天冬酰胺周围观察到预期氨基酸组成的偏差,特别是在天冬酰胺之前芳香族残基的出现增加,以及在 +2 位的苏氨酸。糖基化改变了天冬酰胺侧链扭转角分布并降低了其灵活性。发现二级结构发生变化的糖基化位点的概率升高。开发了一种11类分类法来描述糖基化位点周围的蛋白质表面几何形状。33% 的被占据位点位于暴露的凸表面上,10% 在深凹处,20% 在凹槽边缘,聚糖填充裂隙。数量惊人的糖基化天冬酰胺残基具有低可及性。通过折叠过程与聚糖紧密接触的芳香族氨基酸的发生率高于其在表面或蛋白质核心中的正常水平。这些数据对糖基化序列占据的控制和糖基化位点的进化选择具有重要意义,并结合蛋白质折叠稳定机制和蛋白质折叠的区域质量控制进行了讨论。疏水的蛋白质 - 聚糖相互作用以及折叠蛋白质中糖基化位点的低可及性是常见特征,可能在介导这些功能中起关键作用。

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