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Novel Susceptibility Genes Drive Familial Non-Medullary Thyroid Cancer in a Large Consanguineous Kindred

Familial non-medullary thyroid cancer (FNMTC) is a well-differentiated thyroid cancer (DTC) of follicular cell origin in two or more first-degree relatives. Patients typically demonstrate an autosomal dominant inheritance pattern with incomplete penetrance. While known genes and chromosomal loci acc...

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Autores principales: Majdalani, Pierre, Yoel, Uri, Nasasra, Tayseer, Fraenkel, Merav, Haim, Alon, Loewenthal, Neta, Zarivach, Raz, Hershkovitz, Eli, Parvari, Ruti
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10179265/
https://www.ncbi.nlm.nih.gov/pubmed/37175943
http://dx.doi.org/10.3390/ijms24098233
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author Majdalani, Pierre
Yoel, Uri
Nasasra, Tayseer
Fraenkel, Merav
Haim, Alon
Loewenthal, Neta
Zarivach, Raz
Hershkovitz, Eli
Parvari, Ruti
author_facet Majdalani, Pierre
Yoel, Uri
Nasasra, Tayseer
Fraenkel, Merav
Haim, Alon
Loewenthal, Neta
Zarivach, Raz
Hershkovitz, Eli
Parvari, Ruti
author_sort Majdalani, Pierre
collection PubMed
description Familial non-medullary thyroid cancer (FNMTC) is a well-differentiated thyroid cancer (DTC) of follicular cell origin in two or more first-degree relatives. Patients typically demonstrate an autosomal dominant inheritance pattern with incomplete penetrance. While known genes and chromosomal loci account for some FNMTC, the molecular basis for most FNMTC remains elusive. To identify the variation(s) causing FNMTC in an extended consanguineous family consisting of 16 papillary thyroid carcinoma (PTC) cases, we performed whole exome sequence (WES) analysis of six family patients. We demonstrated an association of ARHGEF28, FBXW10, and SLC47A1 genes with FNMTC. The variations in these genes may affect the structures of their encoded proteins and, thus, their function. The most promising causative gene is ARHGEF28, which has high expression in the thyroid, and its protein-protein interactions (PPIs) suggest predisposition of PTC through ARHGEF28-SQSTM1-TP53 or ARHGEF28-PTCSC2-FOXE1-TP53 associations. Using DNA from a patient’s thyroid malignant tissue, we analyzed the possible cooperation of somatic variations with these genes. We revealed two somatic heterozygote variations in XRCC1 and HRAS genes known to implicate thyroid cancer. Thus, the predisposition by the germline variations and a second hit by somatic variations could lead to the progression to PTC.
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spelling pubmed-101792652023-05-13 Novel Susceptibility Genes Drive Familial Non-Medullary Thyroid Cancer in a Large Consanguineous Kindred Majdalani, Pierre Yoel, Uri Nasasra, Tayseer Fraenkel, Merav Haim, Alon Loewenthal, Neta Zarivach, Raz Hershkovitz, Eli Parvari, Ruti Int J Mol Sci Article Familial non-medullary thyroid cancer (FNMTC) is a well-differentiated thyroid cancer (DTC) of follicular cell origin in two or more first-degree relatives. Patients typically demonstrate an autosomal dominant inheritance pattern with incomplete penetrance. While known genes and chromosomal loci account for some FNMTC, the molecular basis for most FNMTC remains elusive. To identify the variation(s) causing FNMTC in an extended consanguineous family consisting of 16 papillary thyroid carcinoma (PTC) cases, we performed whole exome sequence (WES) analysis of six family patients. We demonstrated an association of ARHGEF28, FBXW10, and SLC47A1 genes with FNMTC. The variations in these genes may affect the structures of their encoded proteins and, thus, their function. The most promising causative gene is ARHGEF28, which has high expression in the thyroid, and its protein-protein interactions (PPIs) suggest predisposition of PTC through ARHGEF28-SQSTM1-TP53 or ARHGEF28-PTCSC2-FOXE1-TP53 associations. Using DNA from a patient’s thyroid malignant tissue, we analyzed the possible cooperation of somatic variations with these genes. We revealed two somatic heterozygote variations in XRCC1 and HRAS genes known to implicate thyroid cancer. Thus, the predisposition by the germline variations and a second hit by somatic variations could lead to the progression to PTC. MDPI 2023-05-04 /pmc/articles/PMC10179265/ /pubmed/37175943 http://dx.doi.org/10.3390/ijms24098233 Text en © 2023 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
Majdalani, Pierre
Yoel, Uri
Nasasra, Tayseer
Fraenkel, Merav
Haim, Alon
Loewenthal, Neta
Zarivach, Raz
Hershkovitz, Eli
Parvari, Ruti
Novel Susceptibility Genes Drive Familial Non-Medullary Thyroid Cancer in a Large Consanguineous Kindred
title Novel Susceptibility Genes Drive Familial Non-Medullary Thyroid Cancer in a Large Consanguineous Kindred
title_full Novel Susceptibility Genes Drive Familial Non-Medullary Thyroid Cancer in a Large Consanguineous Kindred
title_fullStr Novel Susceptibility Genes Drive Familial Non-Medullary Thyroid Cancer in a Large Consanguineous Kindred
title_full_unstemmed Novel Susceptibility Genes Drive Familial Non-Medullary Thyroid Cancer in a Large Consanguineous Kindred
title_short Novel Susceptibility Genes Drive Familial Non-Medullary Thyroid Cancer in a Large Consanguineous Kindred
title_sort novel susceptibility genes drive familial non-medullary thyroid cancer in a large consanguineous kindred
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10179265/
https://www.ncbi.nlm.nih.gov/pubmed/37175943
http://dx.doi.org/10.3390/ijms24098233
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