Theme 3 In vitro experimental models

IF 2.5 4区 医学 Q2 CLINICAL NEUROLOGY Amyotrophic Lateral Sclerosis and Frontotemporal Degeneration Pub Date : 2019-10-31 DOI:10.1080/21678421.2019.1646991
Shu Yang, Sharlynn Wu, J. Fifita, E. McCann, S. C. M. Fat, J. Galper, S. Freckleton, Kathrine Y. Zhang, I. Blair
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引用次数: 1

Abstract

Background: Ongoing disease gene discoveries continue to drive our understanding of the molecular and cellular mechanisms underlying ALS. Causative genes from 60% of ALS families have been identified using modern genetic techniques, but the causal gene defect is yet to be identified in the remaining 40% of families. These remaining families often do not follow true Mendelian inheritance patterns and are challenging to solve using traditional genetic analysis alone. In vitro and in vivo studies have become critical in assessing and validating these ALS candidate genes.Objectives: In this study, we aim to develop and validate the utility of an in vitro functional pipeline for the discovery and validation of novel ALS candidate genes.Methods: A panel of cell based-assays were applied to candidate genes to examine the presence/absence of known ALS pathologies in cell lines as well as human autopsy tissues. These include immunofluorescence, flow cytometry and western blotting to study toxicity, neuronal inclusion formation, interaction with TDP-43, aberrant protein degradation and accumulation in detergent-insoluble cellular fractions. Immunohistochemistry and immunofluorescence were also used to examine if candidates were present in neuronal inclusions from ALS patient spinal cord tissues.Results: The in vitro pipeline was applied to five candidate genes from an ALS family that is negative for known ALS gene mutations. Two candidates were prioritized as top candidates based on their capacity to induce known ALS cellular pathologies. In transfected cells, the variants in these two genes caused a significantly higher toxicity than wild type, formed detergent insoluble inclusions and was able to co-aggregate with TDP-43 in neuronal cells. The variants have also led to protein degradation defects. One of the candidates also co-localised with TDP-43-positive neuronal inclusions in sporadic ALS patient post-mortem tissues, a signature pathology of ALS.Discussion and conclusions: We have demonstrated the utility of a functional prioritization pipeline and successfully prioritized two novel candidate ALS genes. These genes, and its associated pathways, will be further investigated through the development of animal models to establish if there is support for its role in ALS. New ALS genes offer fresh diagnostic and therapeutic targets and tools for the generation of novel animal models to better understand disease biology and offer preclinical testing of candidate treatments for ALS in the future.
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主题3体外实验模型
背景:正在进行的疾病基因发现继续推动我们对ALS的分子和细胞机制的理解。60%的ALS家族的致病基因已经使用现代遗传技术进行了鉴定,但其余40%的家族中的致病基因缺陷尚待鉴定。这些剩余的家族通常不遵循真正的孟德尔遗传模式,单独使用传统的遗传分析很难解决。体外和体内研究在评估和验证这些ALS候选基因方面变得至关重要。目的:在本研究中,我们旨在开发和验证体外功能管道在发现和验证新的ALS候选基因方面的实用性。方法:将一组基于细胞的分析应用于候选基因,以检查细胞系和人类尸检组织中是否存在已知的ALS病理。其中包括免疫荧光、流式细胞术和蛋白质印迹,以研究毒性、神经元包涵体的形成、与TDP-43的相互作用、异常蛋白质降解和在洗涤剂不溶性细胞组分中的积累。免疫组织化学和免疫荧光也用于检查ALS患者脊髓组织的神经元内含物中是否存在候选物。结果:体外管道应用于ALS家族的五个候选基因,该家族对已知ALS基因突变呈阴性。根据两个候选者诱导已知ALS细胞病理的能力,将其列为最佳候选者。在转染的细胞中,这两个基因中的变体引起的毒性明显高于野生型,形成不溶于洗涤剂的内含物,并且能够在神经元细胞中与TDP-43共聚集。这些变体也导致了蛋白质降解缺陷。其中一个候选基因还与散发性ALS患者死后组织中的TDP-43阳性神经元内含物共同定位,这是ALS的标志性病理学。讨论和结论:我们已经证明了功能优先管道的实用性,并成功地优先考虑了两个新的候选ALS基因。这些基因及其相关途径将通过动物模型的开发进行进一步研究,以确定其在ALS中的作用是否得到支持。新的ALS基因为生成新的动物模型提供了新的诊断和治疗靶点和工具,以更好地了解疾病生物学,并为未来ALS的候选治疗方法提供临床前测试。
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来源期刊
CiteScore
5.40
自引率
10.70%
发文量
64
期刊介绍: Amyotrophic Lateral Sclerosis and Frontotemporal Degeneration is an exciting new initiative. It represents a timely expansion of the journal Amyotrophic Lateral Sclerosis in response to the clinical, imaging pathological and genetic overlap between ALS and frontotemporal dementia. The expanded journal provides outstanding coverage of research in a wide range of issues related to motor neuron diseases, especially ALS (Lou Gehrig’s disease) and cognitive decline associated with frontotemporal degeneration. The journal also covers related disorders of the neuroaxis when relevant to these core conditions.
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