Department of Cell Biology and Physiology, University of North Carolina at Chapel Hill, Chapel Hill, United States.
Neuroscience Center, University of North Carolina at Chapel Hill, Chapel Hill, United States.
Elife. 2021 Nov 23;10:e69815. doi: 10.7554/eLife.69815.
Variants in the high confident autism spectrum disorder (ASD) gene target both ubiquitously expressed 220 kDa ankyrin-B and neurospecific 440 kDa ankyrin-B (AnkB440) isoforms. Previous work showed that knock-in mice expressing an ASD-linked variant yielding a truncated AnkB440 product exhibit ectopic brain connectivity and behavioral abnormalities. Expression of this variant or loss of AnkB440 caused axonal hyperbranching in vitro, which implicated AnkB440 microtubule bundling activity in suppressing collateral branch formation. Leveraging multiple mouse models, cellular assays, and live microscopy, we show that AnkB440 also modulates axon collateral branching stochastically by reducing the number of F-actin-rich branch initiation points. Additionally, we show that AnkB440 enables growth cone (GC) collapse in response to chemorepellent factor semaphorin 3 A (Sema 3 A) by stabilizing its receptor complex L1 cell adhesion molecule/neuropilin-1. ASD-linked variants failed to rescue Sema 3A-induced GC collapse. We propose that impaired response to repellent cues due to AnkB440 deficits leads to axonal targeting and branch pruning defects and may contribute to the pathogenicity of variants.
高可信度自闭症谱系障碍(ASD)基因变异靶向广泛表达的 220 kDa 锚蛋白-B 和神经特异性的 440 kDa 锚蛋白-B(AnkB440)同工型。先前的工作表明,表达一种导致截断 AnkB440 产物的 ASD 相关变异的敲入小鼠表现出异位脑连接和行为异常。该变体的表达或 AnkB440 的缺失导致体外轴突过度分支,这表明 AnkB440 的微管捆绑活性抑制了侧支分支的形成。利用多种小鼠模型、细胞测定和活体显微镜,我们表明 AnkB440 还通过减少富含 F-肌动蛋白的分支起始点的数量来随机调节轴突侧支分支。此外,我们表明 AnkB440 通过稳定其受体复合物 L1 细胞黏附分子/神经纤毛蛋白-1 使生长锥(GC)对趋化抑制因子神经递质 3A(Sema 3A)的反应发生塌陷。ASD 相关变异不能挽救 Sema 3A 诱导的 GC 塌陷。我们提出,由于 AnkB440 缺陷导致对排斥信号的反应受损,导致轴突靶向和分支修剪缺陷,并可能导致变异的致病性。