MARK1 regulates dendritic spine morphogenesis and cognitive functionsin vivo

Author:

Kelly-Castro Emily C.ORCID,Shear RebeccaORCID,Dindigal Ankitha H.,Bhagwat Maitreyee,Zhang HuayeORCID

Abstract

AbstractDendritic spines play a pivotal role in synaptic communication and are crucial for learning and memory processes. Abnormalities in spine morphology and plasticity are observed in neurodevelopmental and neuropsychiatric disorders, yet the underlying signaling mechanisms remain poorly understood. The microtubule affinity regulating kinase 1 (MARK1) has been implicated in neurodevelopmental disorders, and theMARK1gene shows accelerated evolution in the human lineage suggesting a role in cognition. However, thein vivorole of MARK1 in synaptogenesis and cognitive functions remains unknown. Here we show that forebrain-specific conditional knockout (cKO) ofMark1causes defects in dendritic spine morphogenesis in hippocampal CA1 pyramidal neurons with a significant reduction in spine density. In addition, we found that MARK1 cKO mice show defects in spatial learning in the Morris Water Maze and reduced anxiety-like behaviors in the Elevated Plus Maze. Furthermore, we found loss of MARK1 causes synaptic accumulation of GKAP and GluR2. Taken together, our data show a novel role for MARK1 in regulating dendritic spine morphogenesis and cognitive functionsin vivo.

Publisher

Cold Spring Harbor Laboratory

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