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Heterozygous Loss of KRIT1 in Mice Affects Metabolic Functions of the Liver, Promoting Hepatic Oxidative and Glycative Stress

KRIT1 loss-of-function mutations underlie the pathogenesis of Cerebral Cavernous Malformation (CCM), a major vascular disease affecting the central nervous system (CNS). However, KRIT1 is also expressed outside the CNS and modulates key regulators of metabolic and oxy-inflammatory pathways, includin...

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Autores principales: Mastrocola, Raffaella, Aimaretti, Eleonora, Ferreira Alves, Gustavo, Cento, Alessia Sofia, Fornelli, Claudia, Dal Bello, Federica, Ferraris, Chiara, Goitre, Luca, Perrelli, Andrea, Retta, Saverio Francesco
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9570113/
https://www.ncbi.nlm.nih.gov/pubmed/36232456
http://dx.doi.org/10.3390/ijms231911151
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author Mastrocola, Raffaella
Aimaretti, Eleonora
Ferreira Alves, Gustavo
Cento, Alessia Sofia
Fornelli, Claudia
Dal Bello, Federica
Ferraris, Chiara
Goitre, Luca
Perrelli, Andrea
Retta, Saverio Francesco
author_facet Mastrocola, Raffaella
Aimaretti, Eleonora
Ferreira Alves, Gustavo
Cento, Alessia Sofia
Fornelli, Claudia
Dal Bello, Federica
Ferraris, Chiara
Goitre, Luca
Perrelli, Andrea
Retta, Saverio Francesco
author_sort Mastrocola, Raffaella
collection PubMed
description KRIT1 loss-of-function mutations underlie the pathogenesis of Cerebral Cavernous Malformation (CCM), a major vascular disease affecting the central nervous system (CNS). However, KRIT1 is also expressed outside the CNS and modulates key regulators of metabolic and oxy-inflammatory pathways, including the master transcription factor FoxO1, suggesting a widespread functional significance. Herein, we show that the KRIT1/FoxO1 axis is implicated in liver metabolic functions and antioxidative/antiglycative defenses. Indeed, by performing comparative studies in KRIT1 heterozygous (KRIT1(+/−)) and wild-type mice, we found that KRIT1 haploinsufficiency resulted in FoxO1 expression/activity downregulation in the liver, and affected hepatic FoxO1-dependent signaling pathways, which are markers of major metabolic processes, including gluconeogenesis, glycolysis, mitochondrial respiration, and glycogen synthesis. Moreover, it caused sustained activation of the master antioxidant transcription factor Nrf2, hepatic accumulation of advanced glycation end-products (AGEs), and abnormal expression/activity of AGE receptors and detoxifying systems. Furthermore, it was associated with an impairment of food intake, systemic glucose disposal, and plasma levels of insulin. Specific molecular alterations detected in the liver of KRIT1(+/−) mice were also confirmed in KRIT1 knockout cells. Overall, our findings demonstrated, for the first time, that KRIT1 haploinsufficiency affects glucose homeostasis and liver metabolic and antioxidative/antiglycative functions, thus inspiring future basic and translational studies.
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spelling pubmed-95701132022-10-17 Heterozygous Loss of KRIT1 in Mice Affects Metabolic Functions of the Liver, Promoting Hepatic Oxidative and Glycative Stress Mastrocola, Raffaella Aimaretti, Eleonora Ferreira Alves, Gustavo Cento, Alessia Sofia Fornelli, Claudia Dal Bello, Federica Ferraris, Chiara Goitre, Luca Perrelli, Andrea Retta, Saverio Francesco Int J Mol Sci Article KRIT1 loss-of-function mutations underlie the pathogenesis of Cerebral Cavernous Malformation (CCM), a major vascular disease affecting the central nervous system (CNS). However, KRIT1 is also expressed outside the CNS and modulates key regulators of metabolic and oxy-inflammatory pathways, including the master transcription factor FoxO1, suggesting a widespread functional significance. Herein, we show that the KRIT1/FoxO1 axis is implicated in liver metabolic functions and antioxidative/antiglycative defenses. Indeed, by performing comparative studies in KRIT1 heterozygous (KRIT1(+/−)) and wild-type mice, we found that KRIT1 haploinsufficiency resulted in FoxO1 expression/activity downregulation in the liver, and affected hepatic FoxO1-dependent signaling pathways, which are markers of major metabolic processes, including gluconeogenesis, glycolysis, mitochondrial respiration, and glycogen synthesis. Moreover, it caused sustained activation of the master antioxidant transcription factor Nrf2, hepatic accumulation of advanced glycation end-products (AGEs), and abnormal expression/activity of AGE receptors and detoxifying systems. Furthermore, it was associated with an impairment of food intake, systemic glucose disposal, and plasma levels of insulin. Specific molecular alterations detected in the liver of KRIT1(+/−) mice were also confirmed in KRIT1 knockout cells. Overall, our findings demonstrated, for the first time, that KRIT1 haploinsufficiency affects glucose homeostasis and liver metabolic and antioxidative/antiglycative functions, thus inspiring future basic and translational studies. MDPI 2022-09-22 /pmc/articles/PMC9570113/ /pubmed/36232456 http://dx.doi.org/10.3390/ijms231911151 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
Mastrocola, Raffaella
Aimaretti, Eleonora
Ferreira Alves, Gustavo
Cento, Alessia Sofia
Fornelli, Claudia
Dal Bello, Federica
Ferraris, Chiara
Goitre, Luca
Perrelli, Andrea
Retta, Saverio Francesco
Heterozygous Loss of KRIT1 in Mice Affects Metabolic Functions of the Liver, Promoting Hepatic Oxidative and Glycative Stress
title Heterozygous Loss of KRIT1 in Mice Affects Metabolic Functions of the Liver, Promoting Hepatic Oxidative and Glycative Stress
title_full Heterozygous Loss of KRIT1 in Mice Affects Metabolic Functions of the Liver, Promoting Hepatic Oxidative and Glycative Stress
title_fullStr Heterozygous Loss of KRIT1 in Mice Affects Metabolic Functions of the Liver, Promoting Hepatic Oxidative and Glycative Stress
title_full_unstemmed Heterozygous Loss of KRIT1 in Mice Affects Metabolic Functions of the Liver, Promoting Hepatic Oxidative and Glycative Stress
title_short Heterozygous Loss of KRIT1 in Mice Affects Metabolic Functions of the Liver, Promoting Hepatic Oxidative and Glycative Stress
title_sort heterozygous loss of krit1 in mice affects metabolic functions of the liver, promoting hepatic oxidative and glycative stress
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9570113/
https://www.ncbi.nlm.nih.gov/pubmed/36232456
http://dx.doi.org/10.3390/ijms231911151
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