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Diurnal and seasonal molecular rhythms in human neocortex and their relation to Alzheimer's disease.


ABSTRACT: Circadian and seasonal rhythms are seen in many species, modulate several aspects of human physiology, including brain functions such as mood and cognition, and influence many neurological and psychiatric illnesses. However, there are few data regarding the genome-scale molecular correlates underlying these rhythms, especially in the human brain. Here, we report widespread, site-specific and interrelated diurnal and seasonal rhythms of gene expression in the human brain, and show their relationship with parallel rhythms of epigenetic modification including histone acetylation, and DNA methylation. We also identify transcription factor-binding sites that may drive these effects. Further, we demonstrate that Alzheimer's disease pathology disrupts these rhythms. These data suggest that interrelated diurnal and seasonal epigenetic and transcriptional rhythms may be an important feature of human brain biology, and perhaps human biology more broadly, and that changes in such rhythms may be consequences of, or contributors to, diseases such as Alzheimer's disease.

SUBMITTER: Lim AS 

PROVIDER: S-EPMC5382268 | biostudies-literature | 2017 Apr

REPOSITORIES: biostudies-literature

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Diurnal and seasonal molecular rhythms in human neocortex and their relation to Alzheimer's disease.

Lim Andrew S P AS   Klein Hans-Ulrich HU   Yu Lei L   Chibnik Lori B LB   Ali Sanam S   Xu Jishu J   Bennett David A DA   De Jager Philip L PL  

Nature communications 20170403


Circadian and seasonal rhythms are seen in many species, modulate several aspects of human physiology, including brain functions such as mood and cognition, and influence many neurological and psychiatric illnesses. However, there are few data regarding the genome-scale molecular correlates underlying these rhythms, especially in the human brain. Here, we report widespread, site-specific and interrelated diurnal and seasonal rhythms of gene expression in the human brain, and show their relations  ...[more]

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