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REP1 deficiency causes systemic dysfunction of lipid metabolism and oxidative stress in choroideremia

Choroideremia (CHM) is an X-linked recessive chorioretinal dystrophy caused by mutations in CHM, encoding for Rab escort protein 1 (REP1). Loss of functional REP1 leads to the accumulation of unprenylated Rab proteins and defective intracellular protein trafficking, the putative cause for photorecep...

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Autores principales: Cunha, Dulce Lima, Richardson, Rose, Tracey-White, Dhani, Abbouda, Alessandro, Mitsios, Andreas, Horneffer-van der Sluis, Verena, Takis, Panteleimon, Owen, Nicholas, Skinner, Jane, Welch, Ailsa A., Moosajee, Mariya
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Clinical Investigation 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8262314/
https://www.ncbi.nlm.nih.gov/pubmed/33755601
http://dx.doi.org/10.1172/jci.insight.146934
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author Cunha, Dulce Lima
Richardson, Rose
Tracey-White, Dhani
Abbouda, Alessandro
Mitsios, Andreas
Horneffer-van der Sluis, Verena
Takis, Panteleimon
Owen, Nicholas
Skinner, Jane
Welch, Ailsa A.
Moosajee, Mariya
author_facet Cunha, Dulce Lima
Richardson, Rose
Tracey-White, Dhani
Abbouda, Alessandro
Mitsios, Andreas
Horneffer-van der Sluis, Verena
Takis, Panteleimon
Owen, Nicholas
Skinner, Jane
Welch, Ailsa A.
Moosajee, Mariya
author_sort Cunha, Dulce Lima
collection PubMed
description Choroideremia (CHM) is an X-linked recessive chorioretinal dystrophy caused by mutations in CHM, encoding for Rab escort protein 1 (REP1). Loss of functional REP1 leads to the accumulation of unprenylated Rab proteins and defective intracellular protein trafficking, the putative cause for photoreceptor, retinal pigment epithelium (RPE), and choroidal degeneration. CHM is ubiquitously expressed, but adequate prenylation is considered to be achieved, outside the retina, through the isoform REP2. Recently, the possibility of systemic features in CHM has been debated; therefore, in this study, whole metabolomic analysis of plasma samples from 25 CHM patients versus age- and sex-matched controls was performed. Results showed plasma alterations in oxidative stress–related metabolites, coupled with alterations in tryptophan metabolism, leading to significantly raised serotonin levels. Lipid metabolism was disrupted with decreased branched fatty acids and acylcarnitines, suggestive of dysfunctional lipid oxidation, as well as imbalances of several sphingolipids and glycerophospholipids. Targeted lipidomics of the chm(ru848) zebrafish provided further evidence for dysfunction, with the use of fenofibrate over simvastatin circumventing the prenylation pathway to improve the lipid profile and increase survival. This study provides strong evidence for systemic manifestations of CHM and proposes potentially novel pathomechanisms and targets for therapeutic consideration.
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spelling pubmed-82623142021-07-13 REP1 deficiency causes systemic dysfunction of lipid metabolism and oxidative stress in choroideremia Cunha, Dulce Lima Richardson, Rose Tracey-White, Dhani Abbouda, Alessandro Mitsios, Andreas Horneffer-van der Sluis, Verena Takis, Panteleimon Owen, Nicholas Skinner, Jane Welch, Ailsa A. Moosajee, Mariya JCI Insight Research Article Choroideremia (CHM) is an X-linked recessive chorioretinal dystrophy caused by mutations in CHM, encoding for Rab escort protein 1 (REP1). Loss of functional REP1 leads to the accumulation of unprenylated Rab proteins and defective intracellular protein trafficking, the putative cause for photoreceptor, retinal pigment epithelium (RPE), and choroidal degeneration. CHM is ubiquitously expressed, but adequate prenylation is considered to be achieved, outside the retina, through the isoform REP2. Recently, the possibility of systemic features in CHM has been debated; therefore, in this study, whole metabolomic analysis of plasma samples from 25 CHM patients versus age- and sex-matched controls was performed. Results showed plasma alterations in oxidative stress–related metabolites, coupled with alterations in tryptophan metabolism, leading to significantly raised serotonin levels. Lipid metabolism was disrupted with decreased branched fatty acids and acylcarnitines, suggestive of dysfunctional lipid oxidation, as well as imbalances of several sphingolipids and glycerophospholipids. Targeted lipidomics of the chm(ru848) zebrafish provided further evidence for dysfunction, with the use of fenofibrate over simvastatin circumventing the prenylation pathway to improve the lipid profile and increase survival. This study provides strong evidence for systemic manifestations of CHM and proposes potentially novel pathomechanisms and targets for therapeutic consideration. American Society for Clinical Investigation 2021-05-10 /pmc/articles/PMC8262314/ /pubmed/33755601 http://dx.doi.org/10.1172/jci.insight.146934 Text en © 2021 Cunha et al. https://creativecommons.org/licenses/by/4.0/This work is licensed under the Creative Commons Attribution 4.0 International License. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Cunha, Dulce Lima
Richardson, Rose
Tracey-White, Dhani
Abbouda, Alessandro
Mitsios, Andreas
Horneffer-van der Sluis, Verena
Takis, Panteleimon
Owen, Nicholas
Skinner, Jane
Welch, Ailsa A.
Moosajee, Mariya
REP1 deficiency causes systemic dysfunction of lipid metabolism and oxidative stress in choroideremia
title REP1 deficiency causes systemic dysfunction of lipid metabolism and oxidative stress in choroideremia
title_full REP1 deficiency causes systemic dysfunction of lipid metabolism and oxidative stress in choroideremia
title_fullStr REP1 deficiency causes systemic dysfunction of lipid metabolism and oxidative stress in choroideremia
title_full_unstemmed REP1 deficiency causes systemic dysfunction of lipid metabolism and oxidative stress in choroideremia
title_short REP1 deficiency causes systemic dysfunction of lipid metabolism and oxidative stress in choroideremia
title_sort rep1 deficiency causes systemic dysfunction of lipid metabolism and oxidative stress in choroideremia
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8262314/
https://www.ncbi.nlm.nih.gov/pubmed/33755601
http://dx.doi.org/10.1172/jci.insight.146934
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