Literature DB >> 26322847

Signatures of miR-181a on the Renal Transcriptome and Blood Pressure.

Francine Z Marques1, Simon Pr Romaine2, Matthew Denniff2, James Eales2, John Dormer3, Ingrid M Garrelds4, Lukasz Wojnar5, Katarzyna Musialik6, Barbara Duda-Raszewska7, Bartlomiej Kiszka7, Magdalena Duda7, Brian J Morris8, Nilesh J Samani2,9, Ah Jan Danser4, Pawel Bogdanski6, Ewa Zukowska-Szczechowska7, Fadi J Charchar1, Maciej Tomaszewski2,10.   

Abstract

MicroRNA-181a binds to the 3' untranslated region of messenger RNA (mRNA) for renin, a rate-limiting enzyme of the renin-angiotensin system. Our objective was to determine whether this molecular interaction translates into a clinically meaningful effect on blood pressure and whether circulating miR-181a is a measurable proxy of blood pressure. In 200 human kidneys from the TRANScriptome of renaL humAn TissuE (TRANSLATE) study, renal miR-181a was the sole negative predictor of renin mRNA and a strong correlate of circulating miR-181a. Elevated miR-181a levels correlated positively with systolic and diastolic blood pressure in TRANSLATE, and this association was independent of circulating renin. The association between serum miR-181a and systolic blood pressure was replicated in 199 subjects from the Genetic Regulation of Arterial Pressure of Humans In the Community (GRAPHIC) study. Renal immunohistochemistry and in situ hybridization showed that colocalization of miR-181a and renin was most prominent in collecting ducts where renin is not released into the systemic circulation. Analysis of 69 human kidneys characterized by RNA sequencing revealed that miR-181a was associated with downregulation of four mitochondrial pathways and upregulation of 41 signaling cascades of adaptive immunity and inflammation. We conclude that renal miR-181a has pleiotropic effects on pathways relevant to blood pressure regulation and that circulating levels of miR-181a are both a measurable proxy of renal miR-181a expression and a novel biochemical correlate of blood pressure.

Entities:  

Year:  2015        PMID: 26322847      PMCID: PMC4818264          DOI: 10.2119/molmed.2015.00096

Source DB:  PubMed          Journal:  Mol Med        ISSN: 1076-1551            Impact factor:   6.354


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