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Germline NUP98 Variants in Two Siblings with a Rothmund–Thomson-Like Spectrum: Protein Functional Changes Predicted by Molecular Modeling

Two adult siblings born to first-cousin parents presented a clinical phenotype reminiscent of Rothmund–Thomson syndrome (RTS), implying fragile hair, absent eyelashes/eyebrows, bilateral cataracts, mottled pigmentation, dental decay, hypogonadism, and osteoporosis. As the clinical suspicion was not...

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Autores principales: Colombo, Elisa Adele, Valiante, Michele, Uggeri, Matteo, Orro, Alessandro, Majore, Silvia, Grammatico, Paola, Gentilini, Davide, Finelli, Palma, Gervasini, Cristina, D’Ursi, Pasqualina, Larizza, Lidia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9965077/
https://www.ncbi.nlm.nih.gov/pubmed/36835439
http://dx.doi.org/10.3390/ijms24044028
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author Colombo, Elisa Adele
Valiante, Michele
Uggeri, Matteo
Orro, Alessandro
Majore, Silvia
Grammatico, Paola
Gentilini, Davide
Finelli, Palma
Gervasini, Cristina
D’Ursi, Pasqualina
Larizza, Lidia
author_facet Colombo, Elisa Adele
Valiante, Michele
Uggeri, Matteo
Orro, Alessandro
Majore, Silvia
Grammatico, Paola
Gentilini, Davide
Finelli, Palma
Gervasini, Cristina
D’Ursi, Pasqualina
Larizza, Lidia
author_sort Colombo, Elisa Adele
collection PubMed
description Two adult siblings born to first-cousin parents presented a clinical phenotype reminiscent of Rothmund–Thomson syndrome (RTS), implying fragile hair, absent eyelashes/eyebrows, bilateral cataracts, mottled pigmentation, dental decay, hypogonadism, and osteoporosis. As the clinical suspicion was not supported by the sequencing of RECQL4, the RTS2-causative gene, whole exome sequencing was applied and disclosed the homozygous variants c.83G>A (p.Gly28Asp) and c.2624A>C (p.Glu875Ala) in the nucleoporin 98 (NUP98) gene. Though both variants affect highly conserved amino acids, the c.83G>A looked more intriguing due to its higher pathogenicity score and location of the replaced amino acid between phenylalanine-glycine (FG) repeats within the first NUP98 intrinsically disordered region. Molecular modeling studies of the mutated NUP98 FG domain evidenced a dispersion of the intramolecular cohesion elements and a more elongated conformational state compared to the wild type. This different dynamic behavior may affect the NUP98 functions as the minor plasticity of the mutated FG domain undermines its role as a multi-docking station for RNA and proteins, and the impaired folding can lead to the weakening or the loss of specific interactions. The clinical overlap of NUP98-mutated and RTS2/RTS1 patients, accounted by converging dysregulated gene networks, supports this first-described constitutional NUP98 disorder, expanding the well-known role of NUP98 in cancer.
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spelling pubmed-99650772023-02-26 Germline NUP98 Variants in Two Siblings with a Rothmund–Thomson-Like Spectrum: Protein Functional Changes Predicted by Molecular Modeling Colombo, Elisa Adele Valiante, Michele Uggeri, Matteo Orro, Alessandro Majore, Silvia Grammatico, Paola Gentilini, Davide Finelli, Palma Gervasini, Cristina D’Ursi, Pasqualina Larizza, Lidia Int J Mol Sci Article Two adult siblings born to first-cousin parents presented a clinical phenotype reminiscent of Rothmund–Thomson syndrome (RTS), implying fragile hair, absent eyelashes/eyebrows, bilateral cataracts, mottled pigmentation, dental decay, hypogonadism, and osteoporosis. As the clinical suspicion was not supported by the sequencing of RECQL4, the RTS2-causative gene, whole exome sequencing was applied and disclosed the homozygous variants c.83G>A (p.Gly28Asp) and c.2624A>C (p.Glu875Ala) in the nucleoporin 98 (NUP98) gene. Though both variants affect highly conserved amino acids, the c.83G>A looked more intriguing due to its higher pathogenicity score and location of the replaced amino acid between phenylalanine-glycine (FG) repeats within the first NUP98 intrinsically disordered region. Molecular modeling studies of the mutated NUP98 FG domain evidenced a dispersion of the intramolecular cohesion elements and a more elongated conformational state compared to the wild type. This different dynamic behavior may affect the NUP98 functions as the minor plasticity of the mutated FG domain undermines its role as a multi-docking station for RNA and proteins, and the impaired folding can lead to the weakening or the loss of specific interactions. The clinical overlap of NUP98-mutated and RTS2/RTS1 patients, accounted by converging dysregulated gene networks, supports this first-described constitutional NUP98 disorder, expanding the well-known role of NUP98 in cancer. MDPI 2023-02-16 /pmc/articles/PMC9965077/ /pubmed/36835439 http://dx.doi.org/10.3390/ijms24044028 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
Colombo, Elisa Adele
Valiante, Michele
Uggeri, Matteo
Orro, Alessandro
Majore, Silvia
Grammatico, Paola
Gentilini, Davide
Finelli, Palma
Gervasini, Cristina
D’Ursi, Pasqualina
Larizza, Lidia
Germline NUP98 Variants in Two Siblings with a Rothmund–Thomson-Like Spectrum: Protein Functional Changes Predicted by Molecular Modeling
title Germline NUP98 Variants in Two Siblings with a Rothmund–Thomson-Like Spectrum: Protein Functional Changes Predicted by Molecular Modeling
title_full Germline NUP98 Variants in Two Siblings with a Rothmund–Thomson-Like Spectrum: Protein Functional Changes Predicted by Molecular Modeling
title_fullStr Germline NUP98 Variants in Two Siblings with a Rothmund–Thomson-Like Spectrum: Protein Functional Changes Predicted by Molecular Modeling
title_full_unstemmed Germline NUP98 Variants in Two Siblings with a Rothmund–Thomson-Like Spectrum: Protein Functional Changes Predicted by Molecular Modeling
title_short Germline NUP98 Variants in Two Siblings with a Rothmund–Thomson-Like Spectrum: Protein Functional Changes Predicted by Molecular Modeling
title_sort germline nup98 variants in two siblings with a rothmund–thomson-like spectrum: protein functional changes predicted by molecular modeling
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9965077/
https://www.ncbi.nlm.nih.gov/pubmed/36835439
http://dx.doi.org/10.3390/ijms24044028
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