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N-聚糖酶-1致病变体的结构与功能特征

Structural and Functional Characterization of N-Glycanase-1 Pathogenic Variants.

作者信息

Banning Antje, Hoeren Lukas, Atallah Isis, Orczyk Ralph, Jacquier David, Ballhausen Diana, Tikkanen Ritva

机构信息

Institute of Biochemistry, Medical Faculty, University of Giessen, Friedrichstrasse 24, DE-35390 Giessen, Germany.

Division of Genetic Medicine, Lausanne University Hospital and University of Lausanne, 1005 Lausanne, Switzerland.

出版信息

Cells. 2025 Jul 7;14(13):1036. doi: 10.3390/cells14131036.

Abstract

NGLY1 deficiency is a congenital disorder of deglycosylation, caused by pathogenic variants of the gene. It manifests as global developmental delay, hypo- or alacrima, hypotonia, and a primarily hyperkinetic movement disorder. The NGLY1 enzyme is involved in deglycosylation of misfolded N-glycosylated proteins before their proteasomal degradation and in the activation of transcription factors that control the expression of proteasomal subunits. Here, we have characterized the pathogenic NGLY1 variants found in three Swiss NGLY deficiency patients, as well as the most common pathogenic NGLY1 variant, Arg401*, found in about 20% of patients. Our functional and structural assessments of these variants show that they cause a profound reduction in NGLY1 activity, severely reduced expression of NGLY1 protein, and misprocessing of the transcription factor NFE2L1. Furthermore, transcription of proteasomal subunits and NGLY1 mRNA splicing are impaired by some of these variants. Our in silico structural analysis shows that the Arg390Gln substitution results in destabilization of NGLY1 structure due to a loss of an ionic interaction network of Arg390 and potentially impairment of protein-protein interactions. Our results provide important information on the functional and structural effects of pathogenic NGLY1 variants and pave the way for structure-based development of personalized treatment options.

摘要

NGLY1缺乏症是一种先天性去糖基化障碍疾病,由该基因的致病性变异引起。其表现为全面发育迟缓、泪液分泌减少或无泪、肌张力减退以及主要为运动增多型的运动障碍。NGLY1酶参与错误折叠的N - 糖基化蛋白在蛋白酶体降解前的去糖基化过程,以及控制蛋白酶体亚基表达的转录因子的激活。在此,我们对在三名瑞士NGLY缺乏症患者中发现的致病性NGLY1变异体,以及在约20%的患者中发现的最常见致病性NGLY1变异体Arg401*进行了特征描述。我们对这些变异体的功能和结构评估表明,它们导致NGLY1活性大幅降低、NGLY1蛋白表达严重减少以及转录因子NFE2L1加工错误。此外,其中一些变异体还损害了蛋白酶体亚基的转录和NGLY1 mRNA剪接。我们的计算机模拟结构分析表明,Arg390Gln替代导致NGLY1结构不稳定,原因是Arg390的离子相互作用网络丧失以及可能的蛋白质 - 蛋白质相互作用受损。我们的结果为致病性NGLY1变异体的功能和结构效应提供了重要信息,并为基于结构的个性化治疗方案开发铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a6d0/12248763/f38078198415/cells-14-01036-g001.jpg

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