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首页> 外文期刊>Nature chemical biology >Structure of acid beta-glucosidase with pharmacological chaperone provides insight into Gaucher disease
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Structure of acid beta-glucosidase with pharmacological chaperone provides insight into Gaucher disease

机译:酸性β-葡萄糖苷酶与药理伴侣的结构提供了对高雪氏病的认识

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摘要

Gaucher disease results from mutations in the lysosomal enzyme acid beta-glucosidase ( GCase)(1). Although enzyme replacement therapy has improved the health of some affected individuals, such as those with the prevalent N370S mutation, oral treatment with pharmacological chaperones may be therapeutic in a wider range of tissue compartments by restoring sufficient activity of endogenous mutant GCase(2). Here we demonstrate that isofagomine ( IFG, 1) binds to the GCase active site, and both increases GCase activity in cell lysates and restores lysosomal trafficking in cells containing N370S mutant GCase. We also compare the crystal structures of IFG-bound GCase at low pH with those of glycerol-bound GCase at low pH and apo-GCase at neutral pH. Our data indicate that IFG induces active GCase, which is secured by interactions with Asn370. The design of small molecules that stabilize substrate-bound conformations of mutant proteins may be a general therapeutic strategy for diseases caused by protein misfolding and mistrafficking.
机译:高雪氏病是由溶酶体酸β-葡萄糖苷酶(GCase)的突变引起的(1)。尽管酶替代疗法已经改善了某些患病个体的健康,例如具有普遍N370S突变的个体,但是通过恢复内源突变体GCase的足够活性,用药理伴侣进行口服治疗可能在更广泛的组织隔室中具有治疗作用(2)。在这里,我们证明了异黄花碱(IFG,1)与GCase活性位点结合,并且既增加了细胞裂解物中的GCase活性,又恢复了含有N370S突变体GCase的细胞中的溶酶体运输。我们还比较了在低pH下与IFG结合的GCase的晶体结构与在低pH下和与甘油脱脂的GCase的晶体结构以及在中性pH下的apo-GCase的晶体结构。我们的数据表明,IFG诱导了活性的GCase,该酶通过与Asn370的相互作用而得到保护。稳定突变蛋白底物结合构象的小分子的设计可能是蛋白质错折叠和错配引起的疾病的一般治疗策略。

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