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Age-related loss of neural stem cell O-GlcNAc promotes a glial fate switch through STAT3 activation.


ABSTRACT: Increased neural stem cell (NSC) quiescence is a major determinant of age-related regenerative decline in the adult hippocampus. However, a coextensive model has been proposed in which division-coupled conversion of NSCs into differentiated astrocytes restrict the stem cell pool with age. Here we report that age-related loss of the posttranslational modification, O-linked ?-N-acetylglucosamine (O-GlcNAc), in NSCs promotes a glial fate switch. We detect an age-dependent decrease in NSC O-GlcNAc levels coincident with decreased neurogenesis and increased gliogenesis in the mature hippocampus. Mimicking an age-related loss of NSC O-GlcNAcylation in young mice reduces neurogenesis, increases astrocyte differentiation, and impairs associated cognitive function. Using RNA-sequencing of primary NSCs following decreased O-GlcNAcylation, we detected changes in the STAT3 signaling pathway indicative of glial differentiation. Moreover, using O-GlcNAc-specific mass spectrometry analysis of the aging hippocampus, together with an in vitro site-directed mutagenesis approach, we identify loss of STAT3 O-GlcNAc at Threonine 717 as a driver of astrocyte differentiation. Our data identify the posttranslational modification, O-GlcNAc, as a key molecular regulator of regenerative decline underlying an age-related NSC fate switch.

SUBMITTER: White CW 

PROVIDER: S-EPMC7486730 | biostudies-literature | 2020 Sep

REPOSITORIES: biostudies-literature

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Age-related loss of neural stem cell O-GlcNAc promotes a glial fate switch through STAT3 activation.

White Charles W CW   Fan Xuelai X   Maynard Jason C JC   Wheatley Elizabeth G EG   Bieri Gregor G   Couthouis Julien J   Burlingame Alma L AL   Villeda Saul A SA  

Proceedings of the National Academy of Sciences of the United States of America 20200826 36


Increased neural stem cell (NSC) quiescence is a major determinant of age-related regenerative decline in the adult hippocampus. However, a coextensive model has been proposed in which division-coupled conversion of NSCs into differentiated astrocytes restrict the stem cell pool with age. Here we report that age-related loss of the posttranslational modification, O-linked β-<i>N</i>-acetylglucosamine (O-GlcNAc), in NSCs promotes a glial fate switch. We detect an age-dependent decrease in NSC O-G  ...[more]

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