Wei Zheng, Ji He, Lu Chen, Weiyi Yu, Nan Zhang, Xiaoxuan Liu, D. Fan
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Consistent with the connection between KIF1A and ALS, the missense mutation p.A1083T (c.3247G>A) was shown to cosegregate with disease. The mutations related to ALS in our study were primarily located in the cargo-binding region at the C-terminal, as opposed to the mutations of motor domain at the N-terminal of KIF1A which were linked to hereditary peripheral neuropathy and spastic paraplegia. We observed high clinical heterogeneity in ALS patients with missense mutations in the KIF1A gene. KIF5A is a more frequent determinant of ALS in the European population, while KIF1A accounts for a similar proportion of ALS in both the European and Chinese populations.Our investigation revealed that mutations in the C-terminus of KIF1A could increase the risk of ALS, support the pathogenic role of KIF1A in ALS and expand the phenotypic and genetic spectrum of KIF1A-related ALS.","PeriodicalId":503985,"journal":{"name":"Frontiers in Aging Neuroscience","volume":"94 7","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2024-07-15","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Genetic link between KIF1A mutations and amyotrophic lateral sclerosis: evidence from whole-exome sequencing\",\"authors\":\"Wei Zheng, Ji He, Lu Chen, Weiyi Yu, Nan Zhang, Xiaoxuan Liu, D. 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引用次数: 0
摘要
研究表明,遗传对肌萎缩性脊髓侧索硬化症(ALS)有重大影响。ALS 的发病过程涉及轴突运输和细胞骨架动力学的缺陷。研究人员对 1,068 名患者的全外显子组测序数据进行了分析,以研究 ALS 与 KIF1A 基因之间的遗传联系。对于有 KIF1A 基因突变和家族史的患者,我们将分析扩展到了他们的家族,并使用 Sanger 测序对他们进行了重新分析,以进行共分离分析。在14名ALS患者中检测到了13个非同义变异。与KIF1A和ALS之间的联系相一致的是,错义突变p.A1083T(c.3247G>A)被证明与疾病共聚集。在我们的研究中,与 ALS 有关的突变主要位于 C 端的货物结合区,而与遗传性周围神经病变和痉挛性截瘫有关的 KIF1A N 端运动结构域突变则不在此列。我们在 KIF1A 基因错义突变的 ALS 患者中观察到高度的临床异质性。我们的调查显示,KIF1A C端的突变可能会增加 ALS 的发病风险,支持 KIF1A 在 ALS 中的致病作用,并扩大了 KIF1A 相关 ALS 的表型和遗传谱。
Genetic link between KIF1A mutations and amyotrophic lateral sclerosis: evidence from whole-exome sequencing
Genetics have been shown to have a substantial impact on amyotrophic lateral sclerosis (ALS). The ALS process involves defects in axonal transport and cytoskeletal dynamics. It has been identified that KIF1A, responsible for encoding a kinesin-3 motor protein that carries synaptic vesicles, is considered a genetic predisposing factor for ALS.The analysis of whole-exome sequencing data from 1,068 patients was conducted to examine the genetic link between ALS and KIF1A. For patients with KIF1A gene mutations and a family history, we extended the analysis to their families and reanalyzed them using Sanger sequencing for cosegregation analysis.In our cohort, the KIF1A mutation frequency was 1.31% (14/1,068). Thirteen nonsynonymous variants were detected in 14 ALS patients. Consistent with the connection between KIF1A and ALS, the missense mutation p.A1083T (c.3247G>A) was shown to cosegregate with disease. The mutations related to ALS in our study were primarily located in the cargo-binding region at the C-terminal, as opposed to the mutations of motor domain at the N-terminal of KIF1A which were linked to hereditary peripheral neuropathy and spastic paraplegia. We observed high clinical heterogeneity in ALS patients with missense mutations in the KIF1A gene. KIF5A is a more frequent determinant of ALS in the European population, while KIF1A accounts for a similar proportion of ALS in both the European and Chinese populations.Our investigation revealed that mutations in the C-terminus of KIF1A could increase the risk of ALS, support the pathogenic role of KIF1A in ALS and expand the phenotypic and genetic spectrum of KIF1A-related ALS.