Small RNA sequencing evaluation of renal microRNA biomarkers in dogs with X-linked hereditary nephropathy

Abstract Dogs with X-linked hereditary nephropathy (XLHN) are an animal model for Alport syndrome in humans and progressive chronic kidney disease (CKD). Using mRNA sequencing (mRNA-seq), we have characterized the gene expression profile affecting the progression of XLHN; however, the microRNA (miRN...

Full description

Bibliographic Details
Main Authors: Candice P. Chu, Shiguang Liu, Wenping Song, Ethan Y. Xu, Mary B. Nabity
Format: Article
Language:English
Published: Nature Publishing Group 2021-08-01
Series:Scientific Reports
Online Access:https://doi.org/10.1038/s41598-021-96870-y
id doaj-3328a2122ff94a219f309016a106ffb7
record_format Article
spelling doaj-3328a2122ff94a219f309016a106ffb72021-09-05T11:33:30ZengNature Publishing GroupScientific Reports2045-23222021-08-0111111210.1038/s41598-021-96870-ySmall RNA sequencing evaluation of renal microRNA biomarkers in dogs with X-linked hereditary nephropathyCandice P. Chu0Shiguang Liu1Wenping Song2Ethan Y. Xu3Mary B. Nabity4Department of Veterinary Pathobiology, College of Veterinary Medicine & Biomedical Sciences, Texas A&M UniversitySanofiSanofiSanofiDepartment of Veterinary Pathobiology, College of Veterinary Medicine & Biomedical Sciences, Texas A&M UniversityAbstract Dogs with X-linked hereditary nephropathy (XLHN) are an animal model for Alport syndrome in humans and progressive chronic kidney disease (CKD). Using mRNA sequencing (mRNA-seq), we have characterized the gene expression profile affecting the progression of XLHN; however, the microRNA (miRNA, miR) expression remains unknown. With small RNA-seq and quantitative RT-PCR (qRT-PCR), we used 3 small RNA-seq analysis tools (QIAGEN OmicSoft Studio, miRDeep2, and CPSS 2.0) to profile differentially expressed renal miRNAs, top-ranked miRNA target genes, and enriched biological processes and pathways in CKD progression. Twenty-three kidney biopsies were collected from 5 dogs with XLHN and 4 age-matched, unaffected littermates at 3 clinical time points (T1: onset of proteinuria, T2: onset of azotemia, and T3: advanced azotemia). We identified up to 23 differentially expressed miRNAs at each clinical time point. Five miRNAs (miR-21, miR-146b, miR-802, miR-142, miR-147) were consistently upregulated in affected dogs. We identified miR-186 and miR-26b as effective reference miRNAs for qRT-PCR. This study applied small RNA-seq to identify differentially expressed miRNAs that might regulate critical pathways contributing to CKD progression in dogs with XLHN.https://doi.org/10.1038/s41598-021-96870-y
collection DOAJ
language English
format Article
sources DOAJ
author Candice P. Chu
Shiguang Liu
Wenping Song
Ethan Y. Xu
Mary B. Nabity
spellingShingle Candice P. Chu
Shiguang Liu
Wenping Song
Ethan Y. Xu
Mary B. Nabity
Small RNA sequencing evaluation of renal microRNA biomarkers in dogs with X-linked hereditary nephropathy
Scientific Reports
author_facet Candice P. Chu
Shiguang Liu
Wenping Song
Ethan Y. Xu
Mary B. Nabity
author_sort Candice P. Chu
title Small RNA sequencing evaluation of renal microRNA biomarkers in dogs with X-linked hereditary nephropathy
title_short Small RNA sequencing evaluation of renal microRNA biomarkers in dogs with X-linked hereditary nephropathy
title_full Small RNA sequencing evaluation of renal microRNA biomarkers in dogs with X-linked hereditary nephropathy
title_fullStr Small RNA sequencing evaluation of renal microRNA biomarkers in dogs with X-linked hereditary nephropathy
title_full_unstemmed Small RNA sequencing evaluation of renal microRNA biomarkers in dogs with X-linked hereditary nephropathy
title_sort small rna sequencing evaluation of renal microrna biomarkers in dogs with x-linked hereditary nephropathy
publisher Nature Publishing Group
series Scientific Reports
issn 2045-2322
publishDate 2021-08-01
description Abstract Dogs with X-linked hereditary nephropathy (XLHN) are an animal model for Alport syndrome in humans and progressive chronic kidney disease (CKD). Using mRNA sequencing (mRNA-seq), we have characterized the gene expression profile affecting the progression of XLHN; however, the microRNA (miRNA, miR) expression remains unknown. With small RNA-seq and quantitative RT-PCR (qRT-PCR), we used 3 small RNA-seq analysis tools (QIAGEN OmicSoft Studio, miRDeep2, and CPSS 2.0) to profile differentially expressed renal miRNAs, top-ranked miRNA target genes, and enriched biological processes and pathways in CKD progression. Twenty-three kidney biopsies were collected from 5 dogs with XLHN and 4 age-matched, unaffected littermates at 3 clinical time points (T1: onset of proteinuria, T2: onset of azotemia, and T3: advanced azotemia). We identified up to 23 differentially expressed miRNAs at each clinical time point. Five miRNAs (miR-21, miR-146b, miR-802, miR-142, miR-147) were consistently upregulated in affected dogs. We identified miR-186 and miR-26b as effective reference miRNAs for qRT-PCR. This study applied small RNA-seq to identify differentially expressed miRNAs that might regulate critical pathways contributing to CKD progression in dogs with XLHN.
url https://doi.org/10.1038/s41598-021-96870-y
work_keys_str_mv AT candicepchu smallrnasequencingevaluationofrenalmicrornabiomarkersindogswithxlinkedhereditarynephropathy
AT shiguangliu smallrnasequencingevaluationofrenalmicrornabiomarkersindogswithxlinkedhereditarynephropathy
AT wenpingsong smallrnasequencingevaluationofrenalmicrornabiomarkersindogswithxlinkedhereditarynephropathy
AT ethanyxu smallrnasequencingevaluationofrenalmicrornabiomarkersindogswithxlinkedhereditarynephropathy
AT marybnabity smallrnasequencingevaluationofrenalmicrornabiomarkersindogswithxlinkedhereditarynephropathy
_version_ 1717814135979245568