Literature DB >> 25005792

Genome-wide analysis of gestational gene-environment interactions in the developing kidney.

Lei Yan1, Xiao Yao1, Dimcho Bachvarov2, Zubaida Saifudeen1, Samir S El-Dahr3.   

Abstract

The G protein-coupled bradykinin B2 receptor (Bdkrb2) plays an important role in regulation of blood pressure under conditions of excess salt intake. Our previous work has shown that Bdkrb2 also plays a developmental role since Bdkrb2(-/-) embryos, but not their wild-type or heterozygous littermates, are prone to renal dysgenesis in response to gestational high salt intake. Although impaired terminal differentiation and apoptosis are consistent findings in the Bdkrb2(-/-) mutant kidneys, the developmental pathways downstream of gene-environment interactions leading to the renal phenotype remain unknown. Here, we performed genome-wide transcriptional profiling on embryonic kidneys from salt-stressed Bdkrb2(+/+) and Bdkrb2(-/-) embryos. The results reveal significant alterations in key pathways regulating Wnt signaling, apoptosis, embryonic development, and cell-matrix interactions. In silico analysis reveal that nearly 12% of differentially regulated genes harbor one or more Pax2 DNA-binding sites in their promoter region. Further analysis shows that metanephric kidneys of salt-stressed Bdkrb2(-/-) have a significant downregulation of Pax2 gene expression. This was corroborated in Bdkrb2(-/-);Pax2(GFP+/tg) mice, demonstrating that Pax2 transcriptional activity is significantly repressed by gestational salt-Bdkrb2 interactions. We conclude that gestational gene (Bdkrb2) and environment (salt) interactions cooperate to impact gene expression programs in the developing kidney. Suppression of Pax2 likely contributes to the defects in epithelial survival, growth, and differentiation in salt-stressed BdkrB2(-/-) mice.
Copyright © 2014 the American Physiological Society.

Entities:  

Keywords:  bradykinin receptor-knockout mice; gestational salt intake; kidney development; microarray; paired box transcription factor-2

Mesh:

Substances:

Year:  2014        PMID: 25005792      PMCID: PMC4154247          DOI: 10.1152/physiolgenomics.00035.2014

Source DB:  PubMed          Journal:  Physiol Genomics        ISSN: 1094-8341            Impact factor:   3.107


  45 in total

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2.  PAX2 mutations in oligomeganephronia.

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Journal:  Kidney Int       Date:  2001-02       Impact factor: 10.612

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Journal:  Hum Mol Genet       Date:  2000-01-01       Impact factor: 6.150

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6.  PAX2 suppresses apoptosis in renal collecting duct cells.

Authors:  E Torban; M R Eccles; J Favor; P R Goodyer
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Review 7.  Kidney development: regulatory molecules crucial to both mice and men.

Authors:  C M Bates
Journal:  Mol Genet Metab       Date:  2000 Sep-Oct       Impact factor: 4.797

8.  Bradykinin B2 null mice are prone to renal dysplasia: gene-environment interactions in kidney development.

Authors:  S S El-Dahr; L M Harrison-Bernard; S Dipp; I V Yosipiv; S Meleg-Smith
Journal:  Physiol Genomics       Date:  2000-09-08       Impact factor: 3.107

Review 9.  Retinoids and renal development.

Authors:  C R Burrow
Journal:  Exp Nephrol       Date:  2000 Jul-Oct

10.  Reduced Pax2 gene dosage increases apoptosis and slows the progression of renal cystic disease.

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Journal:  Dev Biol       Date:  2000-03-15       Impact factor: 3.582

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Review 2.  Developmental Genetics and Congenital Anomalies of the Kidney and Urinary Tract.

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Journal:  J Pediatr Genet       Date:  2015-09-07

3.  Comparative Genomic Analysis of the DUF34 Protein Family Suggests Role as a Metal Ion Chaperone or Insertase.

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