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Insights into Hunter syndrome from the structure of iduronate-2-sulfatase

机译:异氰酸酯-2-硫酸酯酶的结构对亨特综合征的认识

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摘要

Hunter syndrome is a rare but devastating childhood disease caused by mutations in the IDS gene encoding iduronate-2-sulfatase, a crucial enzyme in the lysosomal degradation pathway of dermatan sulfate and heparan sulfate. These complex glycosaminoglycans have important roles in cell adhesion, growth, proliferation and repair, and their degradation and recycling in the lysosome is essential for cellular maintenance. A variety of disease-causing mutations have been identified throughout the IDS gene. However, understanding the molecular basis of the disease has been impaired by the lack of structural data. Here, we present the crystal structure of human IDS with a covalently bound sulfate ion in the active site. This structure provides essential insight into multiple mechanisms by which pathogenic mutations interfere with enzyme function, and a compelling explanation for severe Hunter syndrome phenotypes. Understanding the structural consequences of disease-associated mutations will facilitate the identification of patients that may benefit from specific tailored therapies.
机译:亨特综合征是一种罕见的但具有毁灭性的儿童疾病,它是由编码异氰酸酯-2-硫酸酯酶的IDS基因突变引起的,该酶是硫酸皮肤素和硫酸乙酰肝素的溶酶体降解途径中的关键酶。这些复杂的糖胺聚糖在细胞粘附,生长,增殖和修复中具有重要作用,它们在溶酶体中的降解和再循环对于细胞维持至关重要。在整个IDS基因中已鉴定出多种致病突变。但是,由于缺乏结构数据,对疾病分子基础的理解受到了损害。在这里,我们介绍了人类IDS的晶体结构,在活性位点具有共价结合的硫酸根离子。这种结构为致病性突变干扰酶功能的多种机制提供了基本的见识,并为严重的亨特综合症表型提供了令人信服的解释。了解疾病相关突变的结构后果将有助于识别可能受益于特定量身定制疗法的患者。

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