The microcephaly-capillary malformation (MIC-CAP) syndrome is a life-threatening disease caused by biallelic mutations of the STAMBP gene, which encodes an endosomal deubiquitinating enzyme. To establish a suitable preclinical animal model for clinical therapeutic practice, we generated a central nervous system (CNS)-specific Stambp knockout mouse model (Stambp (Sox1-cKO)) that phenocopies Stambp null mice including progressive microcephaly, postnatal growth retardation and complete penetrance of preweaning death. In this MIC-CAP syndrome mouse model, early-onset neuronal death occurs specifically in the hippocampus and cortex, accompanied by aggregation of ubiquitinated proteins, and massive neuroinflammation. Importantly, neonatal AAV9-mediated gene supplementation of Stambp in the brain could significantly improve neurological defects, sustain growth, and prolong the lifespan of Stambp(Sox1-cKO) mice. Together, our findings reveal a central role of brain defects in the pathogenesis of STAMBP deficiency and provide preclinical evidence that postnatal gene replacement is an effective approach to cure the disease.
AAV-mediated Stambp gene replacement therapy rescues neurological defects in a mouse model of microcephaly-capillary malformation syndrome.
AAV介导的Stambp基因替代疗法可挽救小头畸形-毛细血管畸形综合征小鼠模型的神经系统缺陷
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作者:Hu Meixin, Li Jun, Deng Jingxin, Liu Chunxue, Liu Yingying, Li Huiping, Feng Weijun, Xu Xiu
| 期刊: | Molecular Therapy | 影响因子: | 12.000 |
| 时间: | 2024 | 起止号: | 2024 Nov 6; 32(11):4095-4107 |
| doi: | 10.1016/j.ymthe.2024.08.017 | 种属: | Mouse |
| 研究方向: | 神经科学 | ||
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