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Publication : FAM69C, a kinase critical for synaptic function and memory, is defective in neurodegenerative dementia.

First Author  Mei F Year  2022
Journal  Cell Rep Volume  40
Issue  3 Pages  111101
PubMed ID  35858575 Mgi Jnum  J:328853
Mgi Id  MGI:7326971 Doi  10.1016/j.celrep.2022.111101
Citation  Mei F, et al. (2022) FAM69C, a kinase critical for synaptic function and memory, is defective in neurodegenerative dementia. Cell Rep 40(3):111101
abstractText  Synapse loss and memory decline are the primary features of neurodegenerative dementia. However, the molecular underpinnings that drive memory loss remain largely unknown. Here, we report that FAM69C is a kinase critically involved in neurodegenerative dementia. Biochemical analyses uncover that FAM69C is a serine/threonine kinase. We generate the Fam69c knockout mice and show by single-cell RNA sequencing that FAM69C deficiency drives cell-type-specific transcriptional changes relevant to synapse dysfunction. Electrophysiological, morphological, and behavioral experiments demonstrate impairments in synaptic plasticity, dendritic spine density, and memory in Fam69c knockout mice, as well as stress-induced neuronal death. Phosphoproteomic characterizations reveal that FAM69C substrates are involved in synaptic structure and function. Finally, reduced levels of FAM69C are found in postmortem brains of Alzheimer's disease patients. Our study demonstrates that FAM69C is a protective regulator of memory and suggests FAM69C as a potential therapeutic target for memory loss in neurodegenerative dementia.
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