Unknown

Dataset Information

0

Neuroendocrine aging precedes perimenopause and is regulated by DNA methylation.


ABSTRACT: Perimenopause marks initiation of female reproductive senescence. Age of onset is only 47% heritable suggesting that additional factors other than inheritance regulate this endocrine aging transition. To elucidate these factors, we characterized transcriptional and epigenomic changes across endocrine aging using a rat model that recapitulates characteristics of the human perimenopause. RNA-seq analysis revealed that hypothalamic aging precedes onset of perimenopause. In the hypothalamus, global DNA methylation declined with both age and reproductive senescence. Genome-wide epigentic analysis revealed changes in DNA methylation in genes required for hormone signaling, glutamate signaling, and melatonin and circadian pathways. Specific epignetic changes in these signaling pathways provide insight into the origin of perimenopause-associated neurological symptoms such as insomnia. Treatment with 5-aza-2'-deoxycytidine, a DNA-methyltransferase-1 inhibitor, accelerated transition to reproductive senescence/ whereas supplementation with methionine, a S-adenosylmethionine precursor, delayed onset of perimenopause and endocrine aging. Collectively, these data provide evidence for a critical period of female neuroendocrine aging in brain that precedes ovarian failure and that DNA methylation regulates the transition duration of perimenopause to menopause.

SUBMITTER: Bacon ER 

PROVIDER: S-EPMC7117064 | biostudies-literature | 2019 Feb

REPOSITORIES: biostudies-literature

altmetric image

Publications

Neuroendocrine aging precedes perimenopause and is regulated by DNA methylation.

Bacon Eliza R ER   Mishra Aarti A   Wang Yiwei Y   Desai Maunil K MK   Yin Fei F   Brinton Roberta Diaz RD  

Neurobiology of aging 20181005


Perimenopause marks initiation of female reproductive senescence. Age of onset is only 47% heritable suggesting that additional factors other than inheritance regulate this endocrine aging transition. To elucidate these factors, we characterized transcriptional and epigenomic changes across endocrine aging using a rat model that recapitulates characteristics of the human perimenopause. RNA-seq analysis revealed that hypothalamic aging precedes onset of perimenopause. In the hypothalamus, global  ...[more]

Similar Datasets

| S-EPMC8260231 | biostudies-literature
| S-EPMC4693469 | biostudies-other
| S-EPMC3698496 | biostudies-literature
| S-EPMC3943912 | biostudies-literature
| S-EPMC8886788 | biostudies-literature
| S-EPMC10305641 | biostudies-literature
| S-EPMC1360260 | biostudies-literature
| S-EPMC2935175 | biostudies-literature
| S-EPMC8748428 | biostudies-literature
| S-EPMC8414926 | biostudies-literature