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Proteomic Study of Low-Birth-Weight Nephropathy in Rats

The hyperfiltration theory has been used to explain the mechanism of low birth weight (LBW)-related nephropathy. However, the molecular changes in the kidney proteome have not been defined in this disease, and early biomarkers are lacking. We investigated the molecular pathogenesis of LBW rats obtai...

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Autores principales: Imasawa, Toshiyuki, Claverol, Stéphane, Lacombe, Didier, Amoedo, Nivea Dias, Rossignol, Rodrigue
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8508940/
https://www.ncbi.nlm.nih.gov/pubmed/34638634
http://dx.doi.org/10.3390/ijms221910294
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author Imasawa, Toshiyuki
Claverol, Stéphane
Lacombe, Didier
Amoedo, Nivea Dias
Rossignol, Rodrigue
author_facet Imasawa, Toshiyuki
Claverol, Stéphane
Lacombe, Didier
Amoedo, Nivea Dias
Rossignol, Rodrigue
author_sort Imasawa, Toshiyuki
collection PubMed
description The hyperfiltration theory has been used to explain the mechanism of low birth weight (LBW)-related nephropathy. However, the molecular changes in the kidney proteome have not been defined in this disease, and early biomarkers are lacking. We investigated the molecular pathogenesis of LBW rats obtained by intraperitoneal injection of dexamethasone into pregnant animals. Normal-birth-weight (NBW) rats were used as controls. When the rats were four weeks old, the left kidneys were removed and used for comprehensive label-free proteomic studies. Following uninephrectomy, all rats were fed a high-salt diet until 9 weeks of age. Differences in the molecular composition of the kidney cortex were observed at the early step of LBW nephropathy pathogenesis. Untargeted quantitative proteomics showed that proteins involved in energy metabolism, such as oxidative phosphorylation (OXPHOS), the TCA cycle, and glycolysis, were specifically downregulated in the kidneys of LBW rats at four weeks. No pathological changes were detected at this early stage. Pathway analysis identified NEFL2 (NRF2) and RICTOR as potential upstream regulators. The search for biomarkers identified components of the mitochondrial respiratory chain, namely, ubiquinol-cytochrome c reductase complex subunits (UQCR7/11) and ATP5I/L, two components of mitochondrial F(1)F(O)-ATP synthase. These findings were further validated by immunohistology. At later stages of the disease process, the right kidneys revealed an increased frequency of focal segmental glomerulosclerosis lesions, interstitial fibrosis and tubular atrophy. Our findings revealed proteome changes in LBW rat kidneys and revealed a strong downregulation of specific mitochondrial respiratory chain proteins, such as UQCR7.
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spelling pubmed-85089402021-10-13 Proteomic Study of Low-Birth-Weight Nephropathy in Rats Imasawa, Toshiyuki Claverol, Stéphane Lacombe, Didier Amoedo, Nivea Dias Rossignol, Rodrigue Int J Mol Sci Article The hyperfiltration theory has been used to explain the mechanism of low birth weight (LBW)-related nephropathy. However, the molecular changes in the kidney proteome have not been defined in this disease, and early biomarkers are lacking. We investigated the molecular pathogenesis of LBW rats obtained by intraperitoneal injection of dexamethasone into pregnant animals. Normal-birth-weight (NBW) rats were used as controls. When the rats were four weeks old, the left kidneys were removed and used for comprehensive label-free proteomic studies. Following uninephrectomy, all rats were fed a high-salt diet until 9 weeks of age. Differences in the molecular composition of the kidney cortex were observed at the early step of LBW nephropathy pathogenesis. Untargeted quantitative proteomics showed that proteins involved in energy metabolism, such as oxidative phosphorylation (OXPHOS), the TCA cycle, and glycolysis, were specifically downregulated in the kidneys of LBW rats at four weeks. No pathological changes were detected at this early stage. Pathway analysis identified NEFL2 (NRF2) and RICTOR as potential upstream regulators. The search for biomarkers identified components of the mitochondrial respiratory chain, namely, ubiquinol-cytochrome c reductase complex subunits (UQCR7/11) and ATP5I/L, two components of mitochondrial F(1)F(O)-ATP synthase. These findings were further validated by immunohistology. At later stages of the disease process, the right kidneys revealed an increased frequency of focal segmental glomerulosclerosis lesions, interstitial fibrosis and tubular atrophy. Our findings revealed proteome changes in LBW rat kidneys and revealed a strong downregulation of specific mitochondrial respiratory chain proteins, such as UQCR7. MDPI 2021-09-24 /pmc/articles/PMC8508940/ /pubmed/34638634 http://dx.doi.org/10.3390/ijms221910294 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Imasawa, Toshiyuki
Claverol, Stéphane
Lacombe, Didier
Amoedo, Nivea Dias
Rossignol, Rodrigue
Proteomic Study of Low-Birth-Weight Nephropathy in Rats
title Proteomic Study of Low-Birth-Weight Nephropathy in Rats
title_full Proteomic Study of Low-Birth-Weight Nephropathy in Rats
title_fullStr Proteomic Study of Low-Birth-Weight Nephropathy in Rats
title_full_unstemmed Proteomic Study of Low-Birth-Weight Nephropathy in Rats
title_short Proteomic Study of Low-Birth-Weight Nephropathy in Rats
title_sort proteomic study of low-birth-weight nephropathy in rats
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8508940/
https://www.ncbi.nlm.nih.gov/pubmed/34638634
http://dx.doi.org/10.3390/ijms221910294
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