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遗传性痉挛性截瘫:从基因、细胞和网络到药物发现的新途径

Hereditary Spastic Paraplegia: From Genes, Cells and Networks to Novel Pathways for Drug Discovery.

作者信息

Mackay-Sim Alan

机构信息

Griffith Institute for Drug Discovery, Griffith University, Brisbane, QLD 4111, Australia.

出版信息

Brain Sci. 2021 Mar 22;11(3):403. doi: 10.3390/brainsci11030403.

Abstract

Hereditary spastic paraplegia (HSP) is a diverse group of Mendelian genetic disorders affecting the upper motor neurons, specifically degeneration of their distal axons in the corticospinal tract. Currently, there are 80 genes or genomic loci (genomic regions for which the causative gene has not been identified) associated with HSP diagnosis. HSP is therefore genetically very heterogeneous. Finding treatments for the HSPs is a daunting task: a rare disease made rarer by so many causative genes and many potential mutations in those genes in individual patients. Personalized medicine through genetic correction may be possible, but impractical as a generalized treatment strategy. The ideal treatments would be small molecules that are effective for people with different causative mutations. This requires identification of disease-associated cell dysfunctions shared across genotypes despite the large number of HSP genes that suggest a wide diversity of molecular and cellular mechanisms. This review highlights the shared dysfunctional phenotypes in patient-derived cells from patients with different causative mutations and uses bioinformatic analyses of the HSP genes to identify novel cell functions as potential targets for future drug treatments for multiple genotypes.

摘要

遗传性痉挛性截瘫(HSP)是一组多样的孟德尔遗传性疾病,影响上运动神经元,具体表现为皮质脊髓束中其远端轴突的退化。目前,有80个基因或基因组位点(尚未确定致病基因的基因组区域)与HSP诊断相关。因此,HSP在遗传上具有高度异质性。寻找HSP的治疗方法是一项艰巨的任务:这种罕见疾病因众多致病基因以及个体患者中这些基因的许多潜在突变而变得更加罕见。通过基因校正实现个性化医疗或许可行,但作为一种通用的治疗策略却不切实际。理想的治疗方法应该是对具有不同致病突变的人有效的小分子。尽管大量的HSP基因表明分子和细胞机制具有广泛多样性,但这仍需要识别不同基因型之间共有的与疾病相关的细胞功能障碍。本综述强调了来自具有不同致病突变患者的患者来源细胞中共享的功能失调表型,并利用对HSP基因的生物信息学分析来识别新的细胞功能,作为未来针对多种基因型进行药物治疗的潜在靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bd1f/8004882/7ddb70f3bb47/brainsci-11-00403-g001.jpg

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