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N-连接聚糖对人绒毛膜促性腺激素游离α亚基三维结构的影响。

Effects of the N-linked glycans on the 3D structure of the free alpha-subunit of human chorionic gonadotropin.

作者信息

Erbel P J, Karimi-Nejad Y, van Kuik J A, Boelens R, Kamerling J P, Vliegenthart J F

机构信息

Department of Bio-Organic Chemistry, Bijvoet Center, Utrecht University, Padualaan 8, 3584 CH, Utrecht, The Netherlands.

出版信息

Biochemistry. 2000 May 23;39(20):6012-21. doi: 10.1021/bi992786n.

Abstract

To gain insight into intramolecular carbohydrate-protein interactions at the molecular level, the solution structure of differently deglycosylated variants of the alpha-subunit of human chorionic gonadotropin have been studied by NMR spectroscopy. Significant differences in chemical shifts and NOE intensities were observed for amino acid residues close to the carbohydrate chain at Asn78 upon deglycosylation beyond Asn78-bound GlcNAc. As no straightforward strategy is available for the calculation of the NMR structure of intact glycoproteins, a suitable computational protocol had to be developed. To this end, the X-PLOR carbohydrate force field designed for structure refinement was extended and modified. Furthermore, a computational strategy was devised to facilitate successful protein folding in the presence of extended glycans during the simulation. The values for phi and psi dihedral angles of the glycosidic linkages of the oligosaccharide core fragments GlcNAc2(beta1-4)GlcNAc1 and Man3(beta1-4)GlcNAc2 are restricted to a limited range of the broad conformational energy minima accessible for free glycans. This demonstrates that the protein core affects the dynamic behavior of the glycan at Asn78 by steric hindrance. Reciprocally, the NMR structures indicate that the glycan at Asn78 affects the stability of the protein core. The backbone angular order parameters and displacement data of the generated conformers display especially for the beta-turn 20-23 a decreased structural order upon splitting off the glycan beyond the Asn78-bound GlcNAc. In particular, the Asn-bound GlcNAc shields the protein surface from the hydrophilic environment through interaction with predominantly hydrophobic amino acid residues located in both twisted beta-hairpins consisting of residues 10-28 and 59-84.

摘要

为了在分子水平上深入了解分子内碳水化合物 - 蛋白质相互作用,通过核磁共振光谱研究了人绒毛膜促性腺激素α亚基不同去糖基化变体的溶液结构。在去除Asn78连接的GlcNAc后进行去糖基化时,观察到靠近Asn78处碳水化合物链的氨基酸残基在化学位移和NOE强度上有显著差异。由于没有直接的策略可用于计算完整糖蛋白的NMR结构,因此必须开发一种合适的计算方案。为此,对用于结构优化的X-PLOR碳水化合物力场进行了扩展和修改。此外,还设计了一种计算策略,以促进模拟过程中在存在延伸聚糖的情况下蛋白质的成功折叠。寡糖核心片段GlcNAc2(β1-4)GlcNAc1和Man3(β1-4)GlcNAc2的糖苷键的φ和ψ二面角的值被限制在游离聚糖可及的广泛构象能量最小值的有限范围内。这表明蛋白质核心通过空间位阻影响Asn78处聚糖的动态行为。相反,NMR结构表明Asn78处的聚糖影响蛋白质核心的稳定性。生成的构象异构体的主链角序参数和位移数据显示,特别是对于β-转角20 - 23,在去除Asn78连接的GlcNAc之外的聚糖后,结构有序性降低。特别是,Asn连接的GlcNAc通过与位于由残基10 - 28和59 - 84组成的两个扭曲β-发夹中的主要疏水氨基酸残基相互作用,使蛋白质表面免受亲水环境的影响。

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