Angelman syndrome (AS) is a debilitating neurodevelopmental disorder caused by loss of maternally-inherited UBE3A. In neurons, paternally-inherited UBE3A is silenced in cis by a long non-coding RNA called Ube3a-ATS. Here, we found that Neisseria meningitidis Cas9 with two mutations (D15A and H587A) in the nuclease domains (dNmCas9) can unsilence the dormant paternal Ube3a allele in mouse and human neurons when targeted to Snord115 snoRNAÂ genes located in introns of Ube3a-ATS. Importantly, dNmCas9 disrupted Ube3a-ATS with a non-template bias and in the absence of a chromatin modifying domain, supporting a transcriptional interference mechanism. When packaged into an adeno-associated virus (AAV) vector, dNmCas9 exhibited dose-dependent Ube3a-ATS knock-down and paternal Ube3a unsilencing in vitro and in vivo. This vector also partially rescued the hind limb clasp phenotype when delivered to neonatal AS model mice. Collectively, our study underscores the potential of dCas9-based therapeutics without chromatin repression domains to mediate transcriptional downregulation.
AAV-dCas9 vector unsilences paternal Ube3a in neurons by impeding Ube3a-ATS transcription.
AAV-dCas9 载体通过抑制 Ube3a-ATS 转录来解除神经元中父系 Ube3a 的沉默
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作者:Wolter Justin M, James Lucas M, Boeshore Samantha L, Mao Hanqian, McCoy Eric S, Ryan Daniel F, Fragola Giulia, Taylor-Blake Bonnie, Stein Jason L, Zylka Mark J
| 期刊: | Communications Biology | 影响因子: | 5.100 |
| 时间: | 2025 | 起止号: | 2025 Sep 2; 8(1):1332 |
| doi: | 10.1038/s42003-025-08794-2 | 研究方向: | 神经科学 |
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