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蛋白质O-连接N-乙酰半乳糖胺糖基化的最新结构与机制研究进展

Recent structural and mechanistic insights into protein O-GalNAc glycosylation.

作者信息

Hurtado-Guerrero Ramon

机构信息

Fundación ARAID, Edificio CEEI ARAGÓN, Zaragoza 50018, Spain Institute of Biocomputation and Physics of Complex Systems (BIFI), University of Zaragoza, BIFI-IQFR (CSIC) Joint Unit, Mariano Esquillor s/n, Campus Rio Ebro, Edificio I+D, Zaragoza, Spain

出版信息

Biochem Soc Trans. 2016 Feb;44(1):61-7. doi: 10.1042/BST20150178.

Abstract

Protein O-GalNAcylation is an abundant post-translational modification and predicted to occur in over 80% of the proteins passing through the Golgi apparatus. This modification is driven by 20 polypeptide GaINAc (N-acetylgalactosamine)-transferases (GalNAc-Ts), which are unique in that they possess both catalytic and lectin domains. The peptide substrate specificities of GalNAc-Ts are still poorly defined and our understanding of the sequence and structural features that direct O-glycosylation of proteins is limited. Part of this may be attributed to the complex regulation by coordinated action of multiple GalNAc-T isoforms, and part of this may also be attributed to the two functional domains of GalNAc-Ts that both seems to be involved in directing the substrate specificities. Recent studies have resulted in 3D structures of GalNAc-Ts and determination of the reaction mechanism of this family of enzymes. Key advances include the trapping of binary/ternary complexes in combination with computational simulations and AFM/small-SAXS experiments, which have allowed for the dissection of the reaction coordinates and the mechanism by which the lectin domains modulate the glycosylation. These studies not only broaden our knowledge of the modes-of-action of this family of enzymes but also open up potential avenues for the rational design of effective and selective inhibitors of O-glycosylation.

摘要

蛋白质O-连接的N-乙酰半乳糖胺糖基化是一种丰富的翻译后修饰,预计在超过80%穿过高尔基体的蛋白质中发生。这种修饰由20种多肽N-乙酰半乳糖胺(GalNAc)-转移酶(GalNAc-Ts)驱动,其独特之处在于它们同时拥有催化结构域和凝集素结构域。GalNAc-Ts的肽底物特异性仍不清楚,我们对指导蛋白质O-糖基化的序列和结构特征的了解有限。部分原因可能归因于多种GalNAc-T同工型协同作用的复杂调控,部分原因也可能归因于GalNAc-Ts的两个功能结构域似乎都参与了指导底物特异性。最近的研究得出了GalNAc-Ts的三维结构并确定了该酶家族的反应机制。关键进展包括结合计算模拟以及原子力显微镜/小角X射线散射实验捕获二元/三元复合物,这使得能够剖析反应坐标以及凝集素结构域调节糖基化的机制。这些研究不仅拓宽了我们对该酶家族作用方式的认识,还为合理设计有效的O-糖基化选择性抑制剂开辟了潜在途径。

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