黏多醣症 IIIB 的果蝇模型

IF 3.3 3区 生物学 Q2 GENETICS & HEREDITY
Genetics Pub Date : 2024-12-31 DOI:10.1093/genetics/iyae219
Bibhu Simkhada, Nestor O Nazario-Yepiz, Patrick S Freymuth, Rachel A Lyman, Vijay Shankar, Kali Wiggins, Heather Flanagan-Steet, Amrita Basu, Ryan J Weiss, Robert R H Anholt, Trudy F C Mackay
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引用次数: 0

摘要

粘多糖病IIIB型(MPS IIIB)是由α - n -乙酰氨基葡萄糖酶(NAGLU)缺陷引起的一种罕见的溶酶体贮积障碍,其特点是严重影响中枢神经系统。NAGLU突变导致部分降解的硫酸肝素在溶酶体中积累。这些突变对全基因组基因表达的影响及其与神经变性的因果关系尚不清楚。在这里,我们使用功能性黑腹果蝇NAGLU, NAGLU的同源基因,建立了由基因缺失(NagluKO),错义(NagluY160C)和无义(NagluW422X)突变诱导的MPS IIIB的果蝇模型。我们使用果蝇活动监测系统来分析活动和睡眠,并在突变果蝇中发现了性别和年龄依赖的多动和睡眠缺陷。荧光显微镜对突变蝇的大脑使用溶踪染料显示酸性区室显著增加。从果蝇大脑的RNA测序中确定的差异表达基因参与了影响神经系统发育的生物过程。利用已知的这些基因的相互作用伙伴构建的遗传相互作用网络包括两个主要的子网络,其中一个富集与突触功能相关的基因,另一个富集与神经发育过程相关的基因。我们的数据表明,由硫酸肝素分解破坏引起的溶酶体功能障碍对细胞内囊泡运输的稳定状态有广泛的影响,包括与突触传递相关的囊泡。基础生物学过程的进化保守性预示着MPS IIIB的果蝇模型可以作为MPS IIIB及相关疾病治疗方法未来发展的体内系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Drosophila Model of Mucopolysaccharidosis IIIB.

Mucopolysaccharidosis type IIIB (MPS IIIB) is a rare lysosomal storage disorder caused by defects in alpha-N-acetylglucosaminidase (NAGLU) and characterized by severe effects in the central nervous system. Mutations in NAGLU cause accumulation of partially degraded heparan sulfate in lysosomes. The consequences of these mutations on whole genome gene expression and their causal relationships to neural degeneration remain unknown. Here, we used the functional Drosophila melanogaster ortholog of NAGLU, Naglu, to develop a fly model for MPS IIIB induced by gene deletion (NagluKO), missense (NagluY160C), and nonsense (NagluW422X) mutations. We used the Drosophila activity monitoring system to analyze activity and sleep and found sex- and age-dependent hyperactivity and sleep defects in mutant flies. Fluorescence microscopy on mutant fly brains using Lysotracker dye revealed a significant increase in acidic compartments. Differentially expressed genes determined from RNA sequencing of fly brains are involved in biological processes that affect nervous system development. A genetic interaction network constructed using known interacting partners of these genes consists of two major subnetworks, one of which is enriched in genes associated with synaptic function and the other with neurodevelopmental processes. Our data indicate that lysosomal dysfunction arising from disruption of heparan sulfate breakdown has widespread effects on the steady state of intracellular vesicle transport, including vesicles associated with synaptic transmission. Evolutionary conservation of fundamental biological processes predicts that the Drosophila model of MPS IIIB can serve as an in vivo system for the future development of therapies for MPS IIIB and related disorders.

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来源期刊
Genetics
Genetics GENETICS & HEREDITY-
CiteScore
6.90
自引率
6.10%
发文量
177
审稿时长
1.5 months
期刊介绍: GENETICS is published by the Genetics Society of America, a scholarly society that seeks to deepen our understanding of the living world by advancing our understanding of genetics. Since 1916, GENETICS has published high-quality, original research presenting novel findings bearing on genetics and genomics. The journal publishes empirical studies of organisms ranging from microbes to humans, as well as theoretical work. While it has an illustrious history, GENETICS has changed along with the communities it serves: it is not your mentor''s journal. The editors make decisions quickly – in around 30 days – without sacrificing the excellence and scholarship for which the journal has long been known. GENETICS is a peer reviewed, peer-edited journal, with an international reach and increasing visibility and impact. All editorial decisions are made through collaboration of at least two editors who are practicing scientists. GENETICS is constantly innovating: expanded types of content include Reviews, Commentary (current issues of interest to geneticists), Perspectives (historical), Primers (to introduce primary literature into the classroom), Toolbox Reviews, plus YeastBook, FlyBook, and WormBook (coming spring 2016). For particularly time-sensitive results, we publish Communications. As part of our mission to serve our communities, we''ve published thematic collections, including Genomic Selection, Multiparental Populations, Mouse Collaborative Cross, and the Genetics of Sex.
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