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Hewitt, S. C.

Publications and source records attributed to Hewitt, S. C..

2 recordsLinked to original sources

The estrogen receptor α cistrome in human endometrium and epithelial organoids

ContextEndometrial health is impacted by molecular processes that underlie estrogen responses. ObjectiveTo define estrogen regulation of endometrial function by integrating the estrogen receptor alpha (ESR1) cistrome and transcriptome of endometrial biopsies taken from the proliferative and midsecretory phases of the menstrual cycle and hormonally stimulated endometrial epithelial organoids. DesignESR1 ChIPseq and RNAseq were performed on proliferative or mid-secretory endometrial biopsies and on hormone treated organoid cultures. SettingEndometrial samples were obtained from volunteers at outpatient research clinics for ChIPseq and for organoid culture. Patients or Other ParticipantsParticipants were fertile, reproductive aged women with normal cycle length, and without any history of infertility or irregular cycles. In total, 5 new endometrial biopsies obtained from 5 women were used in this study and were analyzed together with previously published cycle stage endometrial RNAseq data. Intervention(s)There were no interventions in this study. Main Outcome Measure(s)The cycle stage specific ESR1 binding sites and gene expression identification of human endometrium and organoid cultures were integrated with changes in gene expression. ResultsGenes with ESR1 binding in whole endometrium were enriched for chromatin modification and regulation of cell proliferation. The distribution of ESR1 binding sites in organoids was more distal to the gene promoter when compared to primary endometrium. Organoid estrogen/ESR1 candidate target genes impacted formation of cellular protrusions, and chromatin modification, ConclusionsAnalysis of the ESR1 cistromes and transcriptomes from endometrium and organoids provides important resources for understanding how estrogen impacts endometrial health and function.

genomics↗

Cell-type specific analysis of physiological action of estrogen in mouse oviducts

One of the endogenous estrogens, 17{beta}-estradiol (E2) is a female steroid hormone secreted from the ovary. It is well established that E2 causes biochemical and histological changes in the uterus. The oviduct response to E2 is virtually unknown in an in vivo environment. In this study, we assessed the effect of E2 on each oviductal cell type, using an ovariectomized-hormone-replacement mouse model, single cell RNA-sequencing (scRNA-seq), in situ hybridization, and cell-type-specific deletion in mice. We found that each cell type in the oviduct responded to E2 distinctively, especially ciliated and secretory epithelial cells. The treatment of exogenous E2 did not drastically alter the transcriptomic profile from that of endogenous E2 produced during estrus. Moreover, we have identified and validated genes of interest in our datasets that may be used as cell- and region-specific markers in the oviduct. Insulin-like growth factor 1 (Igf1) was characterized as an E2-target gene in the mouse oviduct and was also expressed in human Fallopian tubes. Deletion of Igf1 in progesterone receptor (Pgr)-expressing cells resulted in female subfertility, partially due to an embryo developmental defect and embryo retention within the oviduct. In summary, we have shown that oviductal cell types are differentially regulated by E2 and support gene expression changes that are required for normal embryo development and transport in mouse models.

cell biology↗