Flight to insight: maximizing the potential of Drosophila models of C9orf72-FTD

Nicole A. d’Almeida, Marla Tipping
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Abstract

Advancements in understanding the pathogenesis of C9orf72-associated frontotemporal dementia (C9orf72-FTD) have highlighted the role of repeat-associated non-ATG (RAN) translation and dipeptide repeat proteins (DPRs), with Drosophila melanogaster models providing valuable insights. While studies have primarily focused on RAN translation and DPR toxicity, emerging areas of investigation in fly models have expanded to neuronal dysfunction, autophagy impairment, and synaptic dysfunction, providing potential directions for new therapeutic targets and mechanisms of neurodegeneration. Despite this progress, there are still significant gaps in Drosophila models of C9orf72-FTD, namely in the areas of metabolism and circadian rhythm. Metabolic dysregulation, particularly lipid metabolism, autophagy, and insulin signaling, has been implicated in disease progression with findings from animal models and human patients with C9orf72 repeat expansions. Moreover, circadian disruptions have been observed in C9of72-FTD, with alterations in rest-activity patterns and cellular circadian machinery, suggesting a potential role in disease pathophysiology. Drosophila models offer unique opportunities to explore these aspects of C9orf72-FTD and identify novel therapeutic targets aimed at mitigating neurodegeneration.
从飞行到洞察:最大限度地发挥 C9orf72-FTD 果蝇模型的潜力
对 C9orf72 相关性额颞叶痴呆症(C9orf72-FTD)发病机制的认识取得了进展,突显了重复相关非ATG(RAN)翻译和二肽重复蛋白(DPR)的作用,黑腹果蝇模型提供了有价值的见解。虽然研究主要集中于 RAN 翻译和 DPR 的毒性,但对果蝇模型的新兴研究领域已扩展到神经元功能障碍、自噬损伤和突触功能障碍,为新的治疗靶点和神经变性机制提供了潜在的方向。尽管取得了这些进展,C9orf72-FTD果蝇模型在新陈代谢和昼夜节律方面仍存在重大差距。代谢失调,尤其是脂质代谢、自噬和胰岛素信号转导,与疾病的进展有牵连,动物模型和人类 C9orf72 重复扩增患者的研究结果也证明了这一点。此外,在 C9of72-FTD 中还观察到了昼夜节律紊乱,休息活动模式和细胞昼夜节律机制发生了改变,这表明昼夜节律紊乱在疾病的病理生理学中可能发挥作用。果蝇模型提供了独特的机会来探索 C9orf72-FTD 的这些方面,并确定旨在减轻神经变性的新型治疗靶点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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