Identification of Betamethasone-Regulated Target Genes and Cell Pathways in Fetal Rat Lung Mesenchymal Fibroblasts

Author:

Seow Bennet K L12,McDougall Annie R A23,Short Kelly L1,Wallace Megan J23,Hooper Stuart B23,Cole Timothy J14ORCID

Affiliation:

1. Department of Biochemistry and Molecular Biology, Monash University, Melbourne, Victoria, Australia

2. The Ritchie Centre, Hudson Institute of Medical Research, Clayton, Victoria, Australia

3. Department of Obstetrics and Gynaecology, Monash University, Clayton, Victoria, Australia

4. Division of Endocrinology and Metabolism, Hudson Institute of Medical Research, Clayton, Victoria, Australia

Abstract

Abstract Preterm birth is characterized by severe lung immaturity that is frequently treated antenatally or postnatally with the synthetic steroid betamethasone. The underlying cellular targets and pathways stimulated by betamethasone in the fetal lung are poorly defined. In this study, betamethasone was compared with corticosterone in steroid-treated primary cultures of fetal rat lung fibroblasts stimulated for 6 hours and analyzed by whole-cell transcriptome sequencing and glucocorticoid (GC) receptor (GR) chromatin immunoprecipitation sequencing (ChIP-Seq) analysis. Strikingly, betamethasone stimulated a much stronger transcriptional response compared with corticosterone for both induced and repressed genes. A total of 483 genes were significantly stimulated by betamethasone or corticosterone, with 476 stimulated by both steroids, indicating a strong overlap in regulation. Changes in mRNA levels were confirmed by quantitative PCR for eight induced and repressed target genes. Pathway analysis identified cell proliferation and cytoskeletal/cell matrix remodeling pathways as key processes regulated by both steroids. One target, transglutaminase 2 (Tgm2), was localized to fetal lung mesenchymal cells. Tgm2 mRNA and protein levels were strongly increased in fibroblasts by both steroids. Whole-genome GR ChIP-Seq analysis with betamethasone identified GC response element–binding sites close to the previously characterized GR target genes Per1, Dusp1, Fkbp5, and Sgk1 and near the genes identified by transcriptome sequencing encoding Crispld2, Tgm2, Hif3α, and Kdr, defining direct genomic induction of expression in fetal lung fibroblasts via the GR. These results demonstrate that betamethasone stimulates specific genes and cellular pathways controlling cell proliferation and extracellular matrix remodeling in lung mesenchymal fibroblasts, providing a basis for betamethasone’s treatment efficacy in preterm birth.

Funder

National Health and Medical Research Council

Publisher

The Endocrine Society

Subject

Endocrinology

Reference70 articles.

1. Effects of elevated fetal cortisol concentrations on the volume, secretion, and reabsorption of lung liquid;Wallace;Am J Physiol,1995

2. Combined effects of corticosteroid, thyroid hormones, and beta-agonist on surfactant, pulmonary mechanics, and beta-receptor binding in fetal lamb lung;Warburton;Pediatr Res,1988

3. The effects of hydrocortisone on lung structure in fetal lambs;Kendall;J Dev Physiol,1990

4. Role of the adrenal glands in the maturation of lung liquid secretory mechanisms in fetal sheep;Wallace;Am J Physiol,1996

5. Cortisol enhances structural maturation of the hypoplastic fetal lung in sheep;Boland;J Physiol,2004

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