Genomics

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MiRNA effectors of estrogen’s bone anabolic activity in a murine model of post-menopausal osteoporosis [mRNA]


ABSTRACT: Estrogen signaling is critical for the development and maintenance of healthy bone and age-related declines in estrogen levels leads to the development of post-menopausal osteoporosis. The large majority of bones consist of a dense outer cortical shell and an internal mesh-like network of trabecular bone which respond differently to external cues such as hormonal signaling. To date, no study has assessed the transcriptomic differences that occur specifically in cortical and trabecular bone compartments in response to hormonal changes. To investigate this, we employed a mouse model of post-menopausal osteoporosis (ovariectomy (OVX)) and estrogen replacement therapy (ERT).  mRNA and miR sequencing revealed highly distinct transcriptomic profiles between cortical and trabecular bone in the setting of OVX and ERT. Through extensive bioinformatic analyses, 7 miRs were identified as most likely to contribute to the observed estrogen-mediated gene expression changes.  Of these, 4 miRNAs were prioritized for further study and were shown to be capable of decreasing the expression of predicted target genes in bone cells, to be estrogen regulated, to be able to enhance the expression of osteoblast differentiation genes, and to confer alterations to the mineralization capacity of primary calvarial osteoblasts. As such, candidate miRs, and miR mimics, may have the capacity to mimic the bone beneficial responses of ERT without the unwanted side effects and therefore represent a novel class of therapeutic approaches to combat diseases related to bone loss.

ORGANISM(S): Mus musculus

PROVIDER: GSE222752 | GEO | 2023/06/26

REPOSITORIES: GEO

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