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Whole Exome/Genome Sequencing Joint Analysis of a Family with Oligogenic Familial Hypercholesterolemia

Autosomal Dominant Hypercholesterolemia (ADH) is a genetic disorder caused by pathogenic variants in LDLR, APOB, PCSK9 and APOE genes. We sought to identify new candidate genes responsible for the ADH phenotype in patients without pathogenic variants in the known ADH-causing genes by focusing on a F...

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Autores principales: Ghaleb, Youmna, Elbitar, Sandy, Philippi, Anne, El Khoury, Petra, Azar, Yara, Andrianirina, Miangaly, Loste, Alexia, Abou-Khalil, Yara, Nicolas, Gaël, Le Borgne, Marie, Moulin, Philippe, Di-Filippo, Mathilde, Charrière, Sybil, Farnier, Michel, Yelnick, Cécile, Carreau, Valérie, Ferrières, Jean, Lecerf, Jean-Michel, Derksen, Alexa, Bernard, Geneviève, Gauthier, Marie-Soleil, Coulombe, Benoit, Lütjohann, Dieter, Fin, Bertrand, Boland, Anne, Olaso, Robert, Deleuze, Jean-François, Rabès, Jean-Pierre, Boileau, Catherine, Abifadel, Marianne, Varret, Mathilde
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8955453/
https://www.ncbi.nlm.nih.gov/pubmed/35323704
http://dx.doi.org/10.3390/metabo12030262
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author Ghaleb, Youmna
Elbitar, Sandy
Philippi, Anne
El Khoury, Petra
Azar, Yara
Andrianirina, Miangaly
Loste, Alexia
Abou-Khalil, Yara
Nicolas, Gaël
Le Borgne, Marie
Moulin, Philippe
Di-Filippo, Mathilde
Charrière, Sybil
Farnier, Michel
Yelnick, Cécile
Carreau, Valérie
Ferrières, Jean
Lecerf, Jean-Michel
Derksen, Alexa
Bernard, Geneviève
Gauthier, Marie-Soleil
Coulombe, Benoit
Lütjohann, Dieter
Fin, Bertrand
Boland, Anne
Olaso, Robert
Deleuze, Jean-François
Rabès, Jean-Pierre
Boileau, Catherine
Abifadel, Marianne
Varret, Mathilde
author_facet Ghaleb, Youmna
Elbitar, Sandy
Philippi, Anne
El Khoury, Petra
Azar, Yara
Andrianirina, Miangaly
Loste, Alexia
Abou-Khalil, Yara
Nicolas, Gaël
Le Borgne, Marie
Moulin, Philippe
Di-Filippo, Mathilde
Charrière, Sybil
Farnier, Michel
Yelnick, Cécile
Carreau, Valérie
Ferrières, Jean
Lecerf, Jean-Michel
Derksen, Alexa
Bernard, Geneviève
Gauthier, Marie-Soleil
Coulombe, Benoit
Lütjohann, Dieter
Fin, Bertrand
Boland, Anne
Olaso, Robert
Deleuze, Jean-François
Rabès, Jean-Pierre
Boileau, Catherine
Abifadel, Marianne
Varret, Mathilde
author_sort Ghaleb, Youmna
collection PubMed
description Autosomal Dominant Hypercholesterolemia (ADH) is a genetic disorder caused by pathogenic variants in LDLR, APOB, PCSK9 and APOE genes. We sought to identify new candidate genes responsible for the ADH phenotype in patients without pathogenic variants in the known ADH-causing genes by focusing on a French family with affected and non-affected members who presented a high ADH polygenic risk score (wPRS). Linkage analysis, whole exome and whole genome sequencing resulted in the identification of variants p.(Pro398Ala) in CYP7A1, p.(Val1382Phe) in LRP6 and p.(Ser202His) in LDLRAP1. A total of 6 other variants were identified in 6 of 160 unrelated ADH probands: p.(Ala13Val) and p.(Aps347Asn) in CYP7A1; p.(Tyr972Cys), p.(Thr1479Ile) and p.(Ser1612Phe) in LRP6; and p.(Ser202LeufsTer19) in LDLRAP1. All six probands presented a moderate wPRS. Serum analyses of carriers of the p.(Pro398Ala) variant in CYP7A1 showed no differences in the synthesis of bile acids compared to the serums of non-carriers. Functional studies of the four LRP6 mutants in HEK293T cells resulted in contradictory results excluding a major effect of each variant alone. Within the family, none of the heterozygous for only the LDLRAP1 p.(Ser202His) variant presented ADH. Altogether, each variant individually does not result in elevated LDL-C; however, the oligogenic combination of two or three variants reveals the ADH phenotype.
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spelling pubmed-89554532022-03-26 Whole Exome/Genome Sequencing Joint Analysis of a Family with Oligogenic Familial Hypercholesterolemia Ghaleb, Youmna Elbitar, Sandy Philippi, Anne El Khoury, Petra Azar, Yara Andrianirina, Miangaly Loste, Alexia Abou-Khalil, Yara Nicolas, Gaël Le Borgne, Marie Moulin, Philippe Di-Filippo, Mathilde Charrière, Sybil Farnier, Michel Yelnick, Cécile Carreau, Valérie Ferrières, Jean Lecerf, Jean-Michel Derksen, Alexa Bernard, Geneviève Gauthier, Marie-Soleil Coulombe, Benoit Lütjohann, Dieter Fin, Bertrand Boland, Anne Olaso, Robert Deleuze, Jean-François Rabès, Jean-Pierre Boileau, Catherine Abifadel, Marianne Varret, Mathilde Metabolites Article Autosomal Dominant Hypercholesterolemia (ADH) is a genetic disorder caused by pathogenic variants in LDLR, APOB, PCSK9 and APOE genes. We sought to identify new candidate genes responsible for the ADH phenotype in patients without pathogenic variants in the known ADH-causing genes by focusing on a French family with affected and non-affected members who presented a high ADH polygenic risk score (wPRS). Linkage analysis, whole exome and whole genome sequencing resulted in the identification of variants p.(Pro398Ala) in CYP7A1, p.(Val1382Phe) in LRP6 and p.(Ser202His) in LDLRAP1. A total of 6 other variants were identified in 6 of 160 unrelated ADH probands: p.(Ala13Val) and p.(Aps347Asn) in CYP7A1; p.(Tyr972Cys), p.(Thr1479Ile) and p.(Ser1612Phe) in LRP6; and p.(Ser202LeufsTer19) in LDLRAP1. All six probands presented a moderate wPRS. Serum analyses of carriers of the p.(Pro398Ala) variant in CYP7A1 showed no differences in the synthesis of bile acids compared to the serums of non-carriers. Functional studies of the four LRP6 mutants in HEK293T cells resulted in contradictory results excluding a major effect of each variant alone. Within the family, none of the heterozygous for only the LDLRAP1 p.(Ser202His) variant presented ADH. Altogether, each variant individually does not result in elevated LDL-C; however, the oligogenic combination of two or three variants reveals the ADH phenotype. MDPI 2022-03-18 /pmc/articles/PMC8955453/ /pubmed/35323704 http://dx.doi.org/10.3390/metabo12030262 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
Ghaleb, Youmna
Elbitar, Sandy
Philippi, Anne
El Khoury, Petra
Azar, Yara
Andrianirina, Miangaly
Loste, Alexia
Abou-Khalil, Yara
Nicolas, Gaël
Le Borgne, Marie
Moulin, Philippe
Di-Filippo, Mathilde
Charrière, Sybil
Farnier, Michel
Yelnick, Cécile
Carreau, Valérie
Ferrières, Jean
Lecerf, Jean-Michel
Derksen, Alexa
Bernard, Geneviève
Gauthier, Marie-Soleil
Coulombe, Benoit
Lütjohann, Dieter
Fin, Bertrand
Boland, Anne
Olaso, Robert
Deleuze, Jean-François
Rabès, Jean-Pierre
Boileau, Catherine
Abifadel, Marianne
Varret, Mathilde
Whole Exome/Genome Sequencing Joint Analysis of a Family with Oligogenic Familial Hypercholesterolemia
title Whole Exome/Genome Sequencing Joint Analysis of a Family with Oligogenic Familial Hypercholesterolemia
title_full Whole Exome/Genome Sequencing Joint Analysis of a Family with Oligogenic Familial Hypercholesterolemia
title_fullStr Whole Exome/Genome Sequencing Joint Analysis of a Family with Oligogenic Familial Hypercholesterolemia
title_full_unstemmed Whole Exome/Genome Sequencing Joint Analysis of a Family with Oligogenic Familial Hypercholesterolemia
title_short Whole Exome/Genome Sequencing Joint Analysis of a Family with Oligogenic Familial Hypercholesterolemia
title_sort whole exome/genome sequencing joint analysis of a family with oligogenic familial hypercholesterolemia
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8955453/
https://www.ncbi.nlm.nih.gov/pubmed/35323704
http://dx.doi.org/10.3390/metabo12030262
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