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对戈谢病结构生物学的见解。

Insights into the structural biology of Gaucher disease.

作者信息

Smith Laura, Mullin Stephen, Schapira Anthony H V

机构信息

Department of Clinical Neurosciences, Institute of Neurology, University College London, London, NW3 2PF, UK.

Department of Clinical Neurosciences, Institute of Neurology, University College London, London, NW3 2PF, UK.

出版信息

Exp Neurol. 2017 Dec;298(Pt B):180-190. doi: 10.1016/j.expneurol.2017.09.010. Epub 2017 Sep 18.

Abstract

Gaucher disease, the most common lysosomal storage disorder, is caused by mutations in the gene encoding the acid-β-glucosidase lysosomal hydrolase enzyme that cleaves glucocerebroside into glucose and ceramide. Reduced enzyme activity and impaired structural stability arise due to >300 known disease-causing mutations. Several of these mutations have also been associated with an increased risk of Parkinson disease (PD). Since the discovery of the acid-β-glucosidase X-ray structure, there have been major advances in our understanding of the structural properties of the protein. Analysis of specific residues has provided insight into their functional and structural importance and provided insight into the pathogenesis of Gaucher disease and the contribution to PD. Disease-causing mutations are positioned throughout the acid-β-glucosidase structure, with many located far from the active site and thus retaining some enzymatic activity however, thus far no clear relationship between mutation location and disease severity has been established. Here, we review the crystal structure of acid-β-glucosidase, while highlighting important structural aspects of the protein in detail. This review discusses the structural stability of acid-β-glucosidase, which can be altered by pH and glycosylation, and explores the relationship between known Gaucher disease and PD mutations, structural stability and disease severity.

摘要

戈谢病是最常见的溶酶体贮积症,由编码酸性β-葡萄糖苷酶(一种将葡糖脑苷脂裂解为葡萄糖和神经酰胺的溶酶体水解酶)的基因突变引起。由于已知有300多种致病突变,导致酶活性降低和结构稳定性受损。其中一些突变还与帕金森病(PD)风险增加有关。自酸性β-葡萄糖苷酶的X射线结构被发现以来,我们对该蛋白质结构特性的理解有了重大进展。对特定残基的分析揭示了它们在功能和结构上的重要性,并为戈谢病的发病机制以及对帕金森病的影响提供了见解。致病突变分布在酸性β-葡萄糖苷酶的整个结构中,许多突变位于远离活性位点的位置,因此仍保留一些酶活性,然而,到目前为止,尚未确定突变位置与疾病严重程度之间的明确关系。在这里,我们回顾酸性β-葡萄糖苷酶的晶体结构,同时详细强调该蛋白质的重要结构方面。本综述讨论了可因pH值和糖基化而改变的酸性β-葡萄糖苷酶的结构稳定性,并探讨了已知的戈谢病和帕金森病突变、结构稳定性与疾病严重程度之间的关系。

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