Prime editing of the β1 adrenoceptor in the brain restores physiological REM sleep in a mouse model of Alzheimer’s disease
Abstract
Abstract Prime editing offers versatile genome modifications with therapeutic potential; yet its use to modulate neural circuitry remains underexplored. Here, we used adeno-associated viral vectors to deliver prime editors into the mouse brain and introduced the naturally occurring Adrb1 A187V variant of the β1-adrenergic receptor, linked to short sleep in humans and mice. Editing reached up to 28.1% in the cortex six months after intracerebroventricular injection and increased excitability of β1-noradrenergic neurons. This enhanced wake-associated behaviors, including home cage activity, locomotion, exploration, and recognition memory, while reducing slow wave activity (SWA) during non-rapid eye movement (NREM) sleep indicating reduced build-up of sleep pressure during active phases. In a mouse model of Alzheimer’s disease, Adrb1 A187V installation restored physiological REM sleep and again reduced NREM sleep SWA following spontaneous activity. Together, these findings demonstrate the feasibility of prime editing for reprogramming genetic circuits in the brain and reveal beneficial effects of the Adrb1 A187V variant on activity and sleep regulation.
Article Details
Authors (31)
Desirée Böck
Lisa Tidecks
Maria Wilhelm
Waleed ElGrawani
Chronobiology and Sleep Research Group, Institute for Pharmacology and Toxicology, University of Zurich
Sian Duss
Chiara Trevisan
Dalila Vena
Anna Maria Reuss
Lucas Kissling
Matteo Ranucci
Mattia Privitera
Lisa K. Polzer
Athena E. Economides
Eleonora I. Ioannidi
Raquel Mendes
Yanik Weber
Justine Leonardi
Jonas Mumenthaler
Elina Villiger
Romain Goutagny
Chantal Mathis
Lukas Schmidheini
Tanja Rothgangl
Sharan Janjuha
Tommaso Patriarchi
Johannes Bohacek
Yaroslav Sych
Adriano Aguzzi
Jochen Winterer
Laboratory of Systems Neuroscience, Institute for Neuroscience, Department of Health Science and Technology, ETH Zurich
Konstantinos Kompotis
Gerald Schwank