Brainwide silencing of prion protein by AAV-mediated delivery of an engineered compact epigenetic editor

通过腺相关病毒(AAV)介导递送工程化紧凑型表观遗传编辑器,实现全脑朊病毒蛋白的沉默。

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作者:Edwin N Neumann # ,Tessa M Bertozzi # ,Elaine Wu ,Fiona Serack ,John W Harvey ,Pamela P Brauer ,Catherine P Pirtle ,Alissa Coffey ,Michael Howard ,Nikita Kamath ,Kenney Lenz ,Kenia Guzman ,Michael H Raymond ,Ahmad S Khalil ,Benjamin E Deverman ,Eric Vallabh Minikel ,Sonia M Vallabh ,Jonathan S Weissman

Abstract

Prion disease is caused by misfolding of the prion protein (PrP) into pathogenic self-propagating conformations, leading to rapid-onset dementia and death. However, elimination of endogenous PrP halts prion disease progression. In this study, we describe Coupled Histone tail for Autoinhibition Release of Methyltransferase (CHARM), a compact, enzyme-free epigenetic editor capable of silencing transcription through programmable DNA methylation. Using a histone H3 tail-Dnmt3l fusion, CHARM recruits and activates endogenous DNA methyltransferases, thereby reducing transgene size and cytotoxicity. When delivered to the mouse brain by systemic injection of adeno-associated virus (AAV), Prnp-targeted CHARM ablates PrP expression across the brain. Furthermore, we have temporally limited editor expression by implementing a kinetically tuned self-silencing approach. CHARM potentially represents a broadly applicable strategy to suppress pathogenic proteins, including those implicated in other neurodegenerative diseases.

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