Neurofibromatosis type 1 (NF1) is a genetic disorder caused by mutations of the NF1 tumor suppressor gene resulting in the loss of function of neurofibromin, a GTPase-activating protein (GAP) for Ras. While the malignant manifestations of NF1 are associated with loss of heterozygosity of the residual WT allele, the nonmalignant neurodevelopmental sequelae, including autism spectrum disorder (ASD) and/or attention deficit hyperactivity disorder (ADHD) are prevalent morbidities that occur in the setting of neurofibromin haploinsufficiency. We reasoned that augmenting endogenous levels of WT neurofibromin could serve as a potential therapeutic strategy to correct the neurodevelopmental manifestations of NF1. Here, we used a combination of genetic screening and genetically engineered murine models to identify a role for the F-box protein FBXW11 as a regulator of neurofibromin degradation. Disruption of Fbxw11, through germline mutation or targeted genetic manipulation in the nucleus accumbens, increased neurofibromin levels, suppressed Ras-dependent ERK phosphorylation, and corrected social learning deficits and impulsive behaviors in male Nf1+/- mice. Our results demonstrate that preventing the degradation of neurofibromin is a feasible and effective approach to ameliorate the neurodevelopmental phenotypes in a haploinsufficient disease model.
A haploinsufficiency restoration strategy corrects neurobehavioral deficits in Nf1+/- mice.
单倍体功能不全恢复策略可纠正 Nf1+/- 小鼠的神经行为缺陷
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作者:Park Su Jung, Lukkes Jodi L, Chan Ka-Kui, Drozd Hayley P, Burgin Callie B, Qian Shaomin, Sullivan Morgan McKenzie, Guevara Cesar Gabriel, Cunningham Nolen, Arenas Stephanie, Collins Makenna A, Zucker Jacob, Won JinHee, Smith Abbi, Jiang Li, Mitchell Dana K, Rhodes Steven D, Angus Steven P, Clapp D Wade
| 期刊: | Journal of Clinical Investigation | 影响因子: | 13.600 |
| 时间: | 2025 | 起止号: | 2025 Jul 1; 135(13):e188932 |
| doi: | 10.1172/JCI188932 | 研究方向: | 神经科学 |
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