Cargando…

Serum and Soleus Metabolomics Signature of Klf10 Knockout Mice to Identify Potential Biomarkers

The transcription factor Krüppel-like factor 10 (Klf10), also known as Tieg1 for TGFβ (Inducible Early Gene-1) is known to control numerous genes in many cell types that are involved in various key biological processes (differentiation, proliferation, apoptosis, inflammation), including cell metabol...

Descripción completa

Detalles Bibliográficos
Autores principales: Baroukh, Nadine, Canteleux, Nathan, Lefèvre, Antoine, Dupuy, Camille, Martias, Cécile, Presset, Antoine, Subramaniam, Malayannan, Hawse, John R., Emond, Patrick, Pouletaut, Philippe, Morandat, Sandrine, Bensamoun, Sabine F., Nadal-Desbarats, Lydie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9231117/
https://www.ncbi.nlm.nih.gov/pubmed/35736488
http://dx.doi.org/10.3390/metabo12060556
_version_ 1784735251621216256
author Baroukh, Nadine
Canteleux, Nathan
Lefèvre, Antoine
Dupuy, Camille
Martias, Cécile
Presset, Antoine
Subramaniam, Malayannan
Hawse, John R.
Emond, Patrick
Pouletaut, Philippe
Morandat, Sandrine
Bensamoun, Sabine F.
Nadal-Desbarats, Lydie
author_facet Baroukh, Nadine
Canteleux, Nathan
Lefèvre, Antoine
Dupuy, Camille
Martias, Cécile
Presset, Antoine
Subramaniam, Malayannan
Hawse, John R.
Emond, Patrick
Pouletaut, Philippe
Morandat, Sandrine
Bensamoun, Sabine F.
Nadal-Desbarats, Lydie
author_sort Baroukh, Nadine
collection PubMed
description The transcription factor Krüppel-like factor 10 (Klf10), also known as Tieg1 for TGFβ (Inducible Early Gene-1) is known to control numerous genes in many cell types that are involved in various key biological processes (differentiation, proliferation, apoptosis, inflammation), including cell metabolism and human disease. In skeletal muscle, particularly in the soleus, deletion of the Klf10 gene (Klf10 KO) resulted in ultrastructure fiber disorganization and mitochondrial metabolism deficiencies, characterized by muscular hypertrophy. To determine the metabolic profile related to loss of Klf10 expression, we analyzed blood and soleus tissue using UHPLC-Mass Spectrometry. Metabolomics analyses on both serum and soleus revealed profound differences between wild-type (WT) and KO animals. Klf10 deficient mice exhibited alterations in metabolites associated with energetic metabolism. Additionally, chemical classes of aromatic and amino-acid compounds were disrupted, together with Krebs cycle intermediates, lipids and phospholipids. From variable importance in projection (VIP) analyses, the Warburg effect, citric acid cycle, gluconeogenesis and transfer of acetyl groups into mitochondria appeared to be possible pathways involved in the metabolic alterations observed in Klf10 KO mice. These studies have revealed essential roles for Klf10 in regulating multiple metabolic pathways whose alterations may underlie the observed skeletal muscle defects as well as other diseases.
format Online
Article
Text
id pubmed-9231117
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-92311172022-06-25 Serum and Soleus Metabolomics Signature of Klf10 Knockout Mice to Identify Potential Biomarkers Baroukh, Nadine Canteleux, Nathan Lefèvre, Antoine Dupuy, Camille Martias, Cécile Presset, Antoine Subramaniam, Malayannan Hawse, John R. Emond, Patrick Pouletaut, Philippe Morandat, Sandrine Bensamoun, Sabine F. Nadal-Desbarats, Lydie Metabolites Article The transcription factor Krüppel-like factor 10 (Klf10), also known as Tieg1 for TGFβ (Inducible Early Gene-1) is known to control numerous genes in many cell types that are involved in various key biological processes (differentiation, proliferation, apoptosis, inflammation), including cell metabolism and human disease. In skeletal muscle, particularly in the soleus, deletion of the Klf10 gene (Klf10 KO) resulted in ultrastructure fiber disorganization and mitochondrial metabolism deficiencies, characterized by muscular hypertrophy. To determine the metabolic profile related to loss of Klf10 expression, we analyzed blood and soleus tissue using UHPLC-Mass Spectrometry. Metabolomics analyses on both serum and soleus revealed profound differences between wild-type (WT) and KO animals. Klf10 deficient mice exhibited alterations in metabolites associated with energetic metabolism. Additionally, chemical classes of aromatic and amino-acid compounds were disrupted, together with Krebs cycle intermediates, lipids and phospholipids. From variable importance in projection (VIP) analyses, the Warburg effect, citric acid cycle, gluconeogenesis and transfer of acetyl groups into mitochondria appeared to be possible pathways involved in the metabolic alterations observed in Klf10 KO mice. These studies have revealed essential roles for Klf10 in regulating multiple metabolic pathways whose alterations may underlie the observed skeletal muscle defects as well as other diseases. MDPI 2022-06-17 /pmc/articles/PMC9231117/ /pubmed/35736488 http://dx.doi.org/10.3390/metabo12060556 Text en © 2022 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
Baroukh, Nadine
Canteleux, Nathan
Lefèvre, Antoine
Dupuy, Camille
Martias, Cécile
Presset, Antoine
Subramaniam, Malayannan
Hawse, John R.
Emond, Patrick
Pouletaut, Philippe
Morandat, Sandrine
Bensamoun, Sabine F.
Nadal-Desbarats, Lydie
Serum and Soleus Metabolomics Signature of Klf10 Knockout Mice to Identify Potential Biomarkers
title Serum and Soleus Metabolomics Signature of Klf10 Knockout Mice to Identify Potential Biomarkers
title_full Serum and Soleus Metabolomics Signature of Klf10 Knockout Mice to Identify Potential Biomarkers
title_fullStr Serum and Soleus Metabolomics Signature of Klf10 Knockout Mice to Identify Potential Biomarkers
title_full_unstemmed Serum and Soleus Metabolomics Signature of Klf10 Knockout Mice to Identify Potential Biomarkers
title_short Serum and Soleus Metabolomics Signature of Klf10 Knockout Mice to Identify Potential Biomarkers
title_sort serum and soleus metabolomics signature of klf10 knockout mice to identify potential biomarkers
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9231117/
https://www.ncbi.nlm.nih.gov/pubmed/35736488
http://dx.doi.org/10.3390/metabo12060556
work_keys_str_mv AT baroukhnadine serumandsoleusmetabolomicssignatureofklf10knockoutmicetoidentifypotentialbiomarkers
AT canteleuxnathan serumandsoleusmetabolomicssignatureofklf10knockoutmicetoidentifypotentialbiomarkers
AT lefevreantoine serumandsoleusmetabolomicssignatureofklf10knockoutmicetoidentifypotentialbiomarkers
AT dupuycamille serumandsoleusmetabolomicssignatureofklf10knockoutmicetoidentifypotentialbiomarkers
AT martiascecile serumandsoleusmetabolomicssignatureofklf10knockoutmicetoidentifypotentialbiomarkers
AT pressetantoine serumandsoleusmetabolomicssignatureofklf10knockoutmicetoidentifypotentialbiomarkers
AT subramaniammalayannan serumandsoleusmetabolomicssignatureofklf10knockoutmicetoidentifypotentialbiomarkers
AT hawsejohnr serumandsoleusmetabolomicssignatureofklf10knockoutmicetoidentifypotentialbiomarkers
AT emondpatrick serumandsoleusmetabolomicssignatureofklf10knockoutmicetoidentifypotentialbiomarkers
AT pouletautphilippe serumandsoleusmetabolomicssignatureofklf10knockoutmicetoidentifypotentialbiomarkers
AT morandatsandrine serumandsoleusmetabolomicssignatureofklf10knockoutmicetoidentifypotentialbiomarkers
AT bensamounsabinef serumandsoleusmetabolomicssignatureofklf10knockoutmicetoidentifypotentialbiomarkers
AT nadaldesbaratslydie serumandsoleusmetabolomicssignatureofklf10knockoutmicetoidentifypotentialbiomarkers