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开发纳米抗体作为葡萄糖脑苷脂酶功能的变构分子伴侣。

Developing nanobodies as allosteric molecular chaperones of glucocerebrosidase function.

作者信息

Dal Maso Thomas, Sinisgalli Chiara, Zilio Gianluca, Franzin Elisa, Tessari Isabella, Pardon Els, Steyaert Jan, Ballet Steven, Greggio Elisa, Versées Wim, Plotegher Nicoletta

机构信息

VIB-VUB Center for Structural Biology, VIB, Brussels, Belgium.

Structural Biology Brussels, Vrije Universiteit Brussel, Brussels, Belgium.

出版信息

Nat Commun. 2025 May 27;16(1):4890. doi: 10.1038/s41467-025-60134-4.

Abstract

The enzyme glucocerebrosidase (GCase) catalyses the hydrolysis of glucosylceramide to glucose and ceramide within lysosomes. Homozygous or compound heterozygous mutations in the GCase-encoding GBA1 gene cause the lysosomal storage disorder Gaucher disease, while heterozygous and homozygous mutations are the most frequent genetic risk factor for Parkinson's disease. These mutations commonly affect GCase stability, trafficking or activity. Here, we report the development and characterization of nanobodies (Nbs) targeting and acting as molecular chaperones for GCase. We identify several Nb families that bind with nanomolar affinity to GCase. Based on biochemical characterization, we group the Nbs in two classes: Nbs that improve the activity of the enzyme and Nbs that increase GCase stability in vitro. A selection of the most promising Nbs is shown to improve GCase function in cell models and positively impact the activity of the N370S mutant GCase. These results lay the foundation for the development of new therapeutic routes.

摘要

葡萄糖脑苷脂酶(GCase)可催化溶酶体内的葡萄糖神经酰胺水解为葡萄糖和神经酰胺。编码GCase的GBA1基因发生纯合或复合杂合突变会导致溶酶体贮积症戈谢病,而杂合和纯合突变是帕金森病最常见的遗传风险因素。这些突变通常会影响GCase的稳定性、运输或活性。在此,我们报告了靶向GCase并作为其分子伴侣发挥作用的纳米抗体(Nbs)的开发和特性。我们鉴定出了几个与GCase具有纳摩尔亲和力的Nb家族。基于生化特性,我们将这些Nb分为两类:一类可提高酶活性,另一类可在体外提高GCase的稳定性。所选的最有前景的Nb在细胞模型中可改善GCase功能,并对N370S突变型GCase的活性产生积极影响。这些结果为开发新的治疗途径奠定了基础。

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