AI Article Synopsis

  • MicroRNAs (miRNAs) play a crucial role in regulating gene expression in cells, with this study focusing on their impact in mouse kidney collecting ducts through the selective ablation of Dicer, an enzyme necessary for miRNA formation.
  • Results from the experiment on Dicer mice showed severe polyuria and impaired kidney function related to reduced levels of AQP2 and AQP4, alongside a comprehensive analysis of regulated miRNAs and proteins that hints at significant alterations in genetic regulation mechanisms.
  • The findings suggest that specific miRNAs are involved in the epigenetic regulation of AQP2, affecting its expression through interactions with transcription factors, despite direct interactions not being demonstrated in the assays conducted.

Article Abstract

Background: MicroRNAs (miRNAs), formed by cleavage of pre-microRNA by the endoribonuclease Dicer, are critical modulators of cell function by post-transcriptionally regulating gene expression.

Methods: Selective ablation of Dicer in AQP2-expressing cells (Dicer mice) was used to investigate the role of miRNAs in the kidney collecting duct of mice.

Results: The mice had severe polyuria and nephrogenic diabetes insipidus, potentially due to greatly reduced AQP2 and AQP4 levels. Although epithelial sodium channel levels were decreased in cortex and increased in inner medulla, amiloride-sensitive sodium reabsorption was equivalent in Dicer mice and controls. Small-RNA sequencing and proteomic analysis revealed 31 and 178 significantly regulated miRNAs and proteins, respectively. Integrated bioinformatic analysis of the miRNAome and proteome suggested alterations in the epigenetic machinery and various transcription factors regulating AQP2 expression in Dicer mice. The expression profile and function of three miRNAs (miR-7688-5p, miR-8114, and miR-409-3p) whose predicted targets were involved in epigenetic control (Phf2, Kdm5c, and Kdm4a) or transcriptional regulation (GATA3, GATA2, and ELF3) of AQP2 were validated. Luciferase assays could not demonstrate direct interaction of AQP2 or the three potential transcription factors with miR-7688-5p, miR-8114, and miR-409-3p. However, transfection of respective miRNA mimics reduced AQP2 expression. Chromatin immunoprecipitation assays demonstrated decreased Phf2 and significantly increased Kdm5c interactions at the gene promoter in Dicer mice, resulting in decreased RNA Pol II association.

Conclusions: Novel evidence indicates miRNA-mediated epigenetic regulation of AQP2 expression.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8259636PMC
http://dx.doi.org/10.1681/ASN.2020010031DOI Listing

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