Institute of Aging, Key Laboratory of Alzheimer's Disease of Zhejiang Province, School of Mental Health and Affiliated Kangning Hospital, The Second Affiliated Hospital and Yuying Children's Hospital, Wenzhou Medical University.
Oujiang Laboratory, Zhejiang Lab for Regenerative Medicine, Vision and Brain Health, Wenzhou, Zhejiang, China.
J Clin Invest. 2022 Oct 3;132(19):e163553. doi: 10.1172/JCI163553.
Autism spectrum disorder (ASD) is a highly variable and heritable neurodevelopmental disease (NDD) with strong genetic underpinnings. In this issue of the JCI, Chen et al. analyzed 2 previously reported, large-scale sequenced ASD cohorts and reported that GIGYF1 is the second most mutated among ASD risk genes. In this issue of the JCI, Chen et al. used a conditional mouse model combined with molecular technologies based on human genetic analyses to determine the critical role of GIGYF1 in ASD. GIGYF1-deficiency affected the recycling of IGF-1R, thereby suppressing the IGF-1R/ERK signaling pathway. Disruption of GIGYF1 in the developing mouse brain led to social deficits and cognitive impairments. These findings extend our understanding of ASD pathogenesis and provide an avenue for developing potentially effective preventions and treatments for patients with ASD.
自闭症谱系障碍(ASD)是一种高度可变且具有遗传基础的神经发育疾病(NDD)。在本期 JCI 中,Chen 等人分析了之前报道的两个大规模 ASD 队列,报道 GIGYF1 是 ASD 风险基因中第二大突变基因。在本期 JCI 中,Chen 等人使用条件性小鼠模型结合基于人类遗传分析的分子技术,确定了 GIGYF1 在 ASD 中的关键作用。GIGYF1 缺失会影响 IGF-1R 的回收,从而抑制 IGF-1R/ERK 信号通路。在发育中的小鼠大脑中破坏 GIGYF1 会导致社交缺陷和认知障碍。这些发现扩展了我们对 ASD 发病机制的理解,并为开发针对 ASD 患者的潜在有效预防和治疗方法提供了途径。