Interplay of transcriptional signaling by progesterone, cyclic AMP, and inflammation in myometrial cells: implications for the control of human parturition

Author:

Stanfield Zachary12ORCID,Amini Peyvand3,Wang Junye4,Yi Lijuan4,Tan Huiqing4,Chance Mark R526,Koyutürk Mehmet57,Mesiano Sam348ORCID

Affiliation:

1. Systems Biology and Bioinformatics Program

2. Department of Nutrition

3. Department of Physiology and Biophysics

4. Department of Reproductive Biology

5. Center for Proteomics and Bioinformatics

6. Case Comprehensive Cancer Center

7. Department of Electrical Engineering and Computer Science

8. Department of Obstetrics and Gynecology, Case Western Reserve University, Cleveland, OH, USA

Abstract

Abstract Parturition involves cellular signaling changes driven by the complex interplay between progesterone (P4), inflammation, and the cyclic adenosine monophosphate (cAMP) pathway. To characterize this interplay, we performed comprehensive transcriptomic studies utilizing eight treatment combinations on myometrial cell lines and tissue samples from pregnant women. We performed genome-wide RNA-sequencing on the hTERT-HM${}^{A/B}$ cell line treated with all combinations of P4, forskolin (FSK) (induces cAMP), and interleukin-1$\beta$ (IL-1$\beta$). We then performed gene set enrichment and regulatory network analyses to identify pathways commonly, differentially, or synergistically regulated by these treatments. Finally, we used tissue similarity index (TSI) to characterize the correspondence between cell lines and tissue phenotypes. We observed that in addition to their individual anti-inflammatory effects, P4 and cAMP synergistically blocked specific inflammatory pathways/regulators including STAT3/6, CEBPA/B, and OCT1/7, but not NF$\kappa$B. TSI analysis indicated that FSK + P4- and IL-1$\beta$-treated cells exhibit transcriptional signatures highly similar to non-laboring and laboring term myometrium, respectively. Our results identify potential therapeutic targets to prevent preterm birth and show that the hTERT-HM${}^{A/B}$ cell line provides an accurate transcriptional model for term myometrial tissue.

Funder

National Institutes of Health

Eunice Kennedy Shriver National Institute of Child Health and Human Development

March of Dimes Ohio Prematurity Research Collaborative

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Developmental Biology,Obstetrics and Gynaecology,Genetics,Molecular Biology,Embryology,Reproductive Medicine

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