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通过对岩藻糖基化蛋白酶抑制剂的核磁共振分析研究糖基化对蛋白质的稳定作用

Stabilization of proteins by glycosylation examined by NMR analysis of a fucosylated proteinase inhibitor.

作者信息

Mer G, Hietter H, Lefèvre J F

机构信息

CNRS-UPR 9003, Ecole Supérieure de Biotechnologie de Strasbourg, Illkirch-Graffenstaden, France.

出版信息

Nat Struct Biol. 1996 Jan;3(1):45-53. doi: 10.1038/nsb0196-45.

Abstract

Here we investigate the effects of the naturally occurring threonine-linked L-fucose moiety on the structure, dynamics and stability of the proteinase inhibitor PMP-C (Pars intercerebralis major peptide C). The three-dimensional structure of PMP-C fucosylated on Thr 9 has been determined by NMR spectroscopy and simulated annealing. The fucose ring is very well ordered, held in place by hydrophobic and hydrogen bond interactions with Thr 16 and Arg 18. Comparing the NMR data and the structure of the fucosylated inhibitor with those of the nonfucosylated form shows that conformational changes only occur in the vicinity of the fucose moiety. Nevertheless, a comparative analysis of the exchange rates of amide protons indicates that fucosylation is responsible for an overall decrease of the dynamic fluctuations of the molecule. This correlates well with an increase in stability of approximately 1 kcal mol-1 as monitored by thermal denaturation.

摘要

在此,我们研究天然存在的苏氨酸连接的L-岩藻糖部分对蛋白酶抑制剂PMP-C(大脑间叶主要肽C)的结构、动力学和稳定性的影响。通过核磁共振光谱和模拟退火确定了苏氨酸9位点岩藻糖基化的PMP-C的三维结构。岩藻糖环排列非常有序,通过与苏氨酸16和精氨酸18的疏水和氢键相互作用固定在位。将岩藻糖基化抑制剂的核磁共振数据和结构与未岩藻糖基化形式的数据和结构进行比较表明,构象变化仅发生在岩藻糖部分附近。然而,对酰胺质子交换率的比较分析表明,岩藻糖基化导致分子动态波动总体降低。这与热变性监测的稳定性增加约1千卡/摩尔密切相关。

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