Cargando…

Metabolomic fingerprinting of renal disease progression in Bardet-Biedl syndrome reveals mitochondrial dysfunction in kidney tubular cells

Chronic kidney disease (CKD) is a major clinical sign of patients with Bardet-Biedl syndrome (BBS), especially in those carrying BBS10 mutations. Twenty-nine patients with BBS and 30 controls underwent a serum-targeted metabolomic analysis. In vitro studies were conducted in two kidney-derived epith...

Descripción completa

Detalles Bibliográficos
Autores principales: Marchese, Emanuela, Caterino, Marianna, Viggiano, Davide, Cevenini, Armando, Tolone, Salvatore, Docimo, Ludovico, Di Iorio, Valentina, Del Vecchio Blanco, Francesca, Fedele, Roberta, Simonelli, Francesca, Perna, Alessandra, Nigro, Vincenzo, Capasso, Giovambattista, Ruoppolo, Margherita, Zacchia, Miriam
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9587000/
https://www.ncbi.nlm.nih.gov/pubmed/36281451
http://dx.doi.org/10.1016/j.isci.2022.105230
_version_ 1784813811546456064
author Marchese, Emanuela
Caterino, Marianna
Viggiano, Davide
Cevenini, Armando
Tolone, Salvatore
Docimo, Ludovico
Di Iorio, Valentina
Del Vecchio Blanco, Francesca
Fedele, Roberta
Simonelli, Francesca
Perna, Alessandra
Nigro, Vincenzo
Capasso, Giovambattista
Ruoppolo, Margherita
Zacchia, Miriam
author_facet Marchese, Emanuela
Caterino, Marianna
Viggiano, Davide
Cevenini, Armando
Tolone, Salvatore
Docimo, Ludovico
Di Iorio, Valentina
Del Vecchio Blanco, Francesca
Fedele, Roberta
Simonelli, Francesca
Perna, Alessandra
Nigro, Vincenzo
Capasso, Giovambattista
Ruoppolo, Margherita
Zacchia, Miriam
author_sort Marchese, Emanuela
collection PubMed
description Chronic kidney disease (CKD) is a major clinical sign of patients with Bardet-Biedl syndrome (BBS), especially in those carrying BBS10 mutations. Twenty-nine patients with BBS and 30 controls underwent a serum-targeted metabolomic analysis. In vitro studies were conducted in two kidney-derived epithelial cell lines, where Bbs10 was stably deleted (IMCD3-Bbs10−/−cells) and over-expressed. The CKD status affected plasmatic metabolite fingerprinting in both patients with BBS and controls. Specific phosphatidylcholine and acylcarnitines discriminated eGFR decline only in patients with BBS. IMCD3-Bbs10−/ cells displayed intracellular lipidaccumulation, reduced mitochondrial potential membrane and citrate synthase staining. Mass-Spectrometry-based analysis revealed that human BBS10 interacted with six mitochondrial proteins, in vitro. In conclusion, renal dysfunction correlated with abnormal phosphatidylcholine and acylcarnitines plasma levels in patients with BBS; in vitro, Bbs10 depletion caused mitochondrial defects while human BBS10 interacted with several mitochondria-related proteins, suggesting an unexplored role of this protein.
format Online
Article
Text
id pubmed-9587000
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Elsevier
record_format MEDLINE/PubMed
spelling pubmed-95870002022-10-23 Metabolomic fingerprinting of renal disease progression in Bardet-Biedl syndrome reveals mitochondrial dysfunction in kidney tubular cells Marchese, Emanuela Caterino, Marianna Viggiano, Davide Cevenini, Armando Tolone, Salvatore Docimo, Ludovico Di Iorio, Valentina Del Vecchio Blanco, Francesca Fedele, Roberta Simonelli, Francesca Perna, Alessandra Nigro, Vincenzo Capasso, Giovambattista Ruoppolo, Margherita Zacchia, Miriam iScience Article Chronic kidney disease (CKD) is a major clinical sign of patients with Bardet-Biedl syndrome (BBS), especially in those carrying BBS10 mutations. Twenty-nine patients with BBS and 30 controls underwent a serum-targeted metabolomic analysis. In vitro studies were conducted in two kidney-derived epithelial cell lines, where Bbs10 was stably deleted (IMCD3-Bbs10−/−cells) and over-expressed. The CKD status affected plasmatic metabolite fingerprinting in both patients with BBS and controls. Specific phosphatidylcholine and acylcarnitines discriminated eGFR decline only in patients with BBS. IMCD3-Bbs10−/ cells displayed intracellular lipidaccumulation, reduced mitochondrial potential membrane and citrate synthase staining. Mass-Spectrometry-based analysis revealed that human BBS10 interacted with six mitochondrial proteins, in vitro. In conclusion, renal dysfunction correlated with abnormal phosphatidylcholine and acylcarnitines plasma levels in patients with BBS; in vitro, Bbs10 depletion caused mitochondrial defects while human BBS10 interacted with several mitochondria-related proteins, suggesting an unexplored role of this protein. Elsevier 2022-09-27 /pmc/articles/PMC9587000/ /pubmed/36281451 http://dx.doi.org/10.1016/j.isci.2022.105230 Text en © 2022 The Author(s) https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Marchese, Emanuela
Caterino, Marianna
Viggiano, Davide
Cevenini, Armando
Tolone, Salvatore
Docimo, Ludovico
Di Iorio, Valentina
Del Vecchio Blanco, Francesca
Fedele, Roberta
Simonelli, Francesca
Perna, Alessandra
Nigro, Vincenzo
Capasso, Giovambattista
Ruoppolo, Margherita
Zacchia, Miriam
Metabolomic fingerprinting of renal disease progression in Bardet-Biedl syndrome reveals mitochondrial dysfunction in kidney tubular cells
title Metabolomic fingerprinting of renal disease progression in Bardet-Biedl syndrome reveals mitochondrial dysfunction in kidney tubular cells
title_full Metabolomic fingerprinting of renal disease progression in Bardet-Biedl syndrome reveals mitochondrial dysfunction in kidney tubular cells
title_fullStr Metabolomic fingerprinting of renal disease progression in Bardet-Biedl syndrome reveals mitochondrial dysfunction in kidney tubular cells
title_full_unstemmed Metabolomic fingerprinting of renal disease progression in Bardet-Biedl syndrome reveals mitochondrial dysfunction in kidney tubular cells
title_short Metabolomic fingerprinting of renal disease progression in Bardet-Biedl syndrome reveals mitochondrial dysfunction in kidney tubular cells
title_sort metabolomic fingerprinting of renal disease progression in bardet-biedl syndrome reveals mitochondrial dysfunction in kidney tubular cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9587000/
https://www.ncbi.nlm.nih.gov/pubmed/36281451
http://dx.doi.org/10.1016/j.isci.2022.105230
work_keys_str_mv AT marcheseemanuela metabolomicfingerprintingofrenaldiseaseprogressioninbardetbiedlsyndromerevealsmitochondrialdysfunctioninkidneytubularcells
AT caterinomarianna metabolomicfingerprintingofrenaldiseaseprogressioninbardetbiedlsyndromerevealsmitochondrialdysfunctioninkidneytubularcells
AT viggianodavide metabolomicfingerprintingofrenaldiseaseprogressioninbardetbiedlsyndromerevealsmitochondrialdysfunctioninkidneytubularcells
AT ceveniniarmando metabolomicfingerprintingofrenaldiseaseprogressioninbardetbiedlsyndromerevealsmitochondrialdysfunctioninkidneytubularcells
AT tolonesalvatore metabolomicfingerprintingofrenaldiseaseprogressioninbardetbiedlsyndromerevealsmitochondrialdysfunctioninkidneytubularcells
AT docimoludovico metabolomicfingerprintingofrenaldiseaseprogressioninbardetbiedlsyndromerevealsmitochondrialdysfunctioninkidneytubularcells
AT diioriovalentina metabolomicfingerprintingofrenaldiseaseprogressioninbardetbiedlsyndromerevealsmitochondrialdysfunctioninkidneytubularcells
AT delvecchioblancofrancesca metabolomicfingerprintingofrenaldiseaseprogressioninbardetbiedlsyndromerevealsmitochondrialdysfunctioninkidneytubularcells
AT fedeleroberta metabolomicfingerprintingofrenaldiseaseprogressioninbardetbiedlsyndromerevealsmitochondrialdysfunctioninkidneytubularcells
AT simonellifrancesca metabolomicfingerprintingofrenaldiseaseprogressioninbardetbiedlsyndromerevealsmitochondrialdysfunctioninkidneytubularcells
AT pernaalessandra metabolomicfingerprintingofrenaldiseaseprogressioninbardetbiedlsyndromerevealsmitochondrialdysfunctioninkidneytubularcells
AT nigrovincenzo metabolomicfingerprintingofrenaldiseaseprogressioninbardetbiedlsyndromerevealsmitochondrialdysfunctioninkidneytubularcells
AT capassogiovambattista metabolomicfingerprintingofrenaldiseaseprogressioninbardetbiedlsyndromerevealsmitochondrialdysfunctioninkidneytubularcells
AT ruoppolomargherita metabolomicfingerprintingofrenaldiseaseprogressioninbardetbiedlsyndromerevealsmitochondrialdysfunctioninkidneytubularcells
AT zacchiamiriam metabolomicfingerprintingofrenaldiseaseprogressioninbardetbiedlsyndromerevealsmitochondrialdysfunctioninkidneytubularcells