Department of Genetics and Development, Columbia University Irving Medical Center, New York, NY, 10032, USA.
Department of Neuroscience, The Herbert Wertheim UF Scripps Institute for Biomedical Innovation and Technology, Jupiter, FL, 33458, USA.
Sci Rep. 2024 Jan 17;14(1):1541. doi: 10.1038/s41598-024-51657-9.
Mutations in Cullin-3 (Cul3), a conserved gene encoding a ubiquitin ligase, are strongly associated with autism spectrum disorder (ASD). Here, we characterize ASD-related pathologies caused by neuron-specific Cul3 knockdown in Drosophila. We confirmed that neuronal Cul3 knockdown causes short sleep, paralleling sleep disturbances in ASD. Because sleep defects and ASD are linked to metabolic dysregulation, we tested the starvation response of neuronal Cul3 knockdown flies; they starved faster and had lower triacylglyceride levels than controls, suggesting defects in metabolic homeostasis. ASD is also characterized by increased biomarkers of oxidative stress; we found that neuronal Cul3 knockdown increased sensitivity to hyperoxia, an exogenous oxidative stress. Additional hallmarks of ASD are deficits in social interactions and learning. Using a courtship suppression assay that measures social interactions and memory of prior courtship, we found that neuronal Cul3 knockdown reduced courtship and learning compared to controls. Finally, we found that neuronal Cul3 depletion alters the anatomy of the mushroom body, a brain region required for memory and sleep. Taken together, the ASD-related phenotypes of neuronal Cul3 knockdown flies establish these flies as a genetic model to study molecular and cellular mechanisms underlying ASD pathology, including metabolic and oxidative stress dysregulation and neurodevelopment.
Cullin-3(Cul3)是一种保守的基因,编码一种泛素连接酶,其突变与自闭症谱系障碍(ASD)强烈相关。在这里,我们描述了果蝇中神经元特异性 Cul3 敲低引起的与 ASD 相关的病理学变化。我们证实神经元 Cul3 敲低会导致睡眠时间缩短,与 ASD 中的睡眠障碍相平行。由于睡眠缺陷和 ASD 与代谢失调有关,我们测试了神经元 Cul3 敲低果蝇的饥饿反应;它们比对照组饥饿得更快,三酰甘油水平更低,这表明代谢稳态存在缺陷。ASD 的另一个特征是氧化应激生物标志物增加;我们发现神经元 Cul3 敲低增加了对高氧的敏感性,即一种外源性氧化应激。ASD 的其他特征还包括社交互动和学习能力缺陷。我们使用了一种求偶抑制测定法来衡量社交互动和之前求偶的记忆,发现与对照组相比,神经元 Cul3 敲低降低了求偶和学习能力。最后,我们发现神经元 Cul3 耗竭改变了蘑菇体的解剖结构,蘑菇体是记忆和睡眠所必需的脑区。综上所述,神经元 Cul3 敲低果蝇的 ASD 相关表型确立了这些果蝇作为研究 ASD 病理学潜在分子和细胞机制的遗传模型,包括代谢和氧化应激失调以及神经发育。