Young CSF restores oligodendrogenesis and memory in aged mice via Fgf17.
Tal IramFabian KernAchint KaurSaket MyneniAllison R MorningstarHeather ShinMiguel A GarciaLakshmi YerraRobert PalovicsAndrew C YangOliver HahnNannan LuSteven R ShukenMichael S HaneyBenoit LehallierManasi IyerJian LuoHenrik ZetterbergAndreas KellerJ Bradley ZucheroTony Wyss-CorayPublished in: Nature (2022)
Recent understanding of how the systemic environment shapes the brain throughout life has led to numerous intervention strategies to slow brain ageing 1-3 . Cerebrospinal fluid (CSF) makes up the immediate environment of brain cells, providing them with nourishing compounds 4,5 . We discovered that infusing young CSF directly into aged brains improves memory function. Unbiased transcriptome analysis of the hippocampus identified oligodendrocytes to be most responsive to this rejuvenated CSF environment. We further showed that young CSF boosts oligodendrocyte progenitor cell (OPC) proliferation and differentiation in the aged hippocampus and in primary OPC cultures. Using SLAMseq to metabolically label nascent mRNA, we identified serum response factor (SRF), a transcription factor that drives actin cytoskeleton rearrangement, as a mediator of OPC proliferation following exposure to young CSF. With age, SRF expression decreases in hippocampal OPCs, and the pathway is induced by acute injection with young CSF. We screened for potential SRF activators in CSF and found that fibroblast growth factor 17 (Fgf17) infusion is sufficient to induce OPC proliferation and long-term memory consolidation in aged mice while Fgf17 blockade impairs cognition in young mice. These findings demonstrate the rejuvenating power of young CSF and identify Fgf17 as a key target to restore oligodendrocyte function in the ageing brain.
Keyphrases
- cerebrospinal fluid
- middle aged
- white matter
- cerebral ischemia
- transcription factor
- resting state
- randomized controlled trial
- signaling pathway
- working memory
- high fat diet induced
- type diabetes
- gene expression
- low dose
- multiple sclerosis
- insulin resistance
- drug induced
- cognitive impairment
- cancer therapy
- risk assessment
- cell proliferation
- cell cycle arrest
- blood brain barrier
- endoplasmic reticulum stress
- mechanical ventilation
- neural stem cells