Cargando…

Germline thymidylate synthase deficiency impacts nucleotide metabolism and causes dyskeratosis congenita

Dyskeratosis congenita (DC) is an inherited bone-marrow-failure disorder characterized by a triad of mucocutaneous features that include abnormal skin pigmentation, nail dystrophy, and oral leucoplakia. Despite the identification of several genetic variants that cause DC, a significant proportion of...

Descripción completa

Detalles Bibliográficos
Autores principales: Tummala, Hemanth, Walne, Amanda, Buccafusca, Roberto, Alnajar, Jenna, Szabo, Anita, Robinson, Peter, McConkie-Rosell, Allyn, Wilson, Meredith, Crowley, Suzanne, Kinsler, Veronica, Ewins, Anna-Maria, Madapura, Pradeepa M., Patel, Manthan, Pontikos, Nikolas, Codd, Veryan, Vulliamy, Tom, Dokal, Inderjeet
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9388389/
https://www.ncbi.nlm.nih.gov/pubmed/35931051
http://dx.doi.org/10.1016/j.ajhg.2022.06.014
_version_ 1784770216849309696
author Tummala, Hemanth
Walne, Amanda
Buccafusca, Roberto
Alnajar, Jenna
Szabo, Anita
Robinson, Peter
McConkie-Rosell, Allyn
Wilson, Meredith
Crowley, Suzanne
Kinsler, Veronica
Ewins, Anna-Maria
Madapura, Pradeepa M.
Patel, Manthan
Pontikos, Nikolas
Codd, Veryan
Vulliamy, Tom
Dokal, Inderjeet
author_facet Tummala, Hemanth
Walne, Amanda
Buccafusca, Roberto
Alnajar, Jenna
Szabo, Anita
Robinson, Peter
McConkie-Rosell, Allyn
Wilson, Meredith
Crowley, Suzanne
Kinsler, Veronica
Ewins, Anna-Maria
Madapura, Pradeepa M.
Patel, Manthan
Pontikos, Nikolas
Codd, Veryan
Vulliamy, Tom
Dokal, Inderjeet
author_sort Tummala, Hemanth
collection PubMed
description Dyskeratosis congenita (DC) is an inherited bone-marrow-failure disorder characterized by a triad of mucocutaneous features that include abnormal skin pigmentation, nail dystrophy, and oral leucoplakia. Despite the identification of several genetic variants that cause DC, a significant proportion of probands remain without a molecular diagnosis. In a cohort of eight independent DC-affected families, we have identified a remarkable series of heterozygous germline variants in the gene encoding thymidylate synthase (TYMS). Although the inheritance appeared to be autosomal recessive, one parent in each family had a wild-type TYMS coding sequence. Targeted genomic sequencing identified a specific haplotype and rare variants in the naturally occurring TYMS antisense regulator ENOSF1 (enolase super family 1) inherited from the other parent. Lymphoblastoid cells from affected probands have severe TYMS deficiency, altered cellular deoxyribonucleotide triphosphate pools, and hypersensitivity to the TYMS-specific inhibitor 5-fluorouracil. These defects in the nucleotide metabolism pathway resulted in genotoxic stress, defective transcription, and abnormal telomere maintenance. Gene-rescue studies in cells from affected probands revealed that post-transcriptional epistatic silencing of TYMS is occurring via elevated ENOSF1. These cell and molecular abnormalities generated by the combination of germline digenic variants at the TYMS-ENOSF1 locus represent a unique pathogenetic pathway for DC causation in these affected individuals, whereas the parents who are carriers of either of these variants in a singular fashion remain unaffected.
format Online
Article
Text
id pubmed-9388389
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Elsevier
record_format MEDLINE/PubMed
spelling pubmed-93883892022-08-20 Germline thymidylate synthase deficiency impacts nucleotide metabolism and causes dyskeratosis congenita Tummala, Hemanth Walne, Amanda Buccafusca, Roberto Alnajar, Jenna Szabo, Anita Robinson, Peter McConkie-Rosell, Allyn Wilson, Meredith Crowley, Suzanne Kinsler, Veronica Ewins, Anna-Maria Madapura, Pradeepa M. Patel, Manthan Pontikos, Nikolas Codd, Veryan Vulliamy, Tom Dokal, Inderjeet Am J Hum Genet Article Dyskeratosis congenita (DC) is an inherited bone-marrow-failure disorder characterized by a triad of mucocutaneous features that include abnormal skin pigmentation, nail dystrophy, and oral leucoplakia. Despite the identification of several genetic variants that cause DC, a significant proportion of probands remain without a molecular diagnosis. In a cohort of eight independent DC-affected families, we have identified a remarkable series of heterozygous germline variants in the gene encoding thymidylate synthase (TYMS). Although the inheritance appeared to be autosomal recessive, one parent in each family had a wild-type TYMS coding sequence. Targeted genomic sequencing identified a specific haplotype and rare variants in the naturally occurring TYMS antisense regulator ENOSF1 (enolase super family 1) inherited from the other parent. Lymphoblastoid cells from affected probands have severe TYMS deficiency, altered cellular deoxyribonucleotide triphosphate pools, and hypersensitivity to the TYMS-specific inhibitor 5-fluorouracil. These defects in the nucleotide metabolism pathway resulted in genotoxic stress, defective transcription, and abnormal telomere maintenance. Gene-rescue studies in cells from affected probands revealed that post-transcriptional epistatic silencing of TYMS is occurring via elevated ENOSF1. These cell and molecular abnormalities generated by the combination of germline digenic variants at the TYMS-ENOSF1 locus represent a unique pathogenetic pathway for DC causation in these affected individuals, whereas the parents who are carriers of either of these variants in a singular fashion remain unaffected. Elsevier 2022-08-04 2022-08-05 /pmc/articles/PMC9388389/ /pubmed/35931051 http://dx.doi.org/10.1016/j.ajhg.2022.06.014 Text en © 2022 The Author(s) https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Tummala, Hemanth
Walne, Amanda
Buccafusca, Roberto
Alnajar, Jenna
Szabo, Anita
Robinson, Peter
McConkie-Rosell, Allyn
Wilson, Meredith
Crowley, Suzanne
Kinsler, Veronica
Ewins, Anna-Maria
Madapura, Pradeepa M.
Patel, Manthan
Pontikos, Nikolas
Codd, Veryan
Vulliamy, Tom
Dokal, Inderjeet
Germline thymidylate synthase deficiency impacts nucleotide metabolism and causes dyskeratosis congenita
title Germline thymidylate synthase deficiency impacts nucleotide metabolism and causes dyskeratosis congenita
title_full Germline thymidylate synthase deficiency impacts nucleotide metabolism and causes dyskeratosis congenita
title_fullStr Germline thymidylate synthase deficiency impacts nucleotide metabolism and causes dyskeratosis congenita
title_full_unstemmed Germline thymidylate synthase deficiency impacts nucleotide metabolism and causes dyskeratosis congenita
title_short Germline thymidylate synthase deficiency impacts nucleotide metabolism and causes dyskeratosis congenita
title_sort germline thymidylate synthase deficiency impacts nucleotide metabolism and causes dyskeratosis congenita
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9388389/
https://www.ncbi.nlm.nih.gov/pubmed/35931051
http://dx.doi.org/10.1016/j.ajhg.2022.06.014
work_keys_str_mv AT tummalahemanth germlinethymidylatesynthasedeficiencyimpactsnucleotidemetabolismandcausesdyskeratosiscongenita
AT walneamanda germlinethymidylatesynthasedeficiencyimpactsnucleotidemetabolismandcausesdyskeratosiscongenita
AT buccafuscaroberto germlinethymidylatesynthasedeficiencyimpactsnucleotidemetabolismandcausesdyskeratosiscongenita
AT alnajarjenna germlinethymidylatesynthasedeficiencyimpactsnucleotidemetabolismandcausesdyskeratosiscongenita
AT szaboanita germlinethymidylatesynthasedeficiencyimpactsnucleotidemetabolismandcausesdyskeratosiscongenita
AT robinsonpeter germlinethymidylatesynthasedeficiencyimpactsnucleotidemetabolismandcausesdyskeratosiscongenita
AT mcconkierosellallyn germlinethymidylatesynthasedeficiencyimpactsnucleotidemetabolismandcausesdyskeratosiscongenita
AT wilsonmeredith germlinethymidylatesynthasedeficiencyimpactsnucleotidemetabolismandcausesdyskeratosiscongenita
AT crowleysuzanne germlinethymidylatesynthasedeficiencyimpactsnucleotidemetabolismandcausesdyskeratosiscongenita
AT kinslerveronica germlinethymidylatesynthasedeficiencyimpactsnucleotidemetabolismandcausesdyskeratosiscongenita
AT ewinsannamaria germlinethymidylatesynthasedeficiencyimpactsnucleotidemetabolismandcausesdyskeratosiscongenita
AT madapurapradeepam germlinethymidylatesynthasedeficiencyimpactsnucleotidemetabolismandcausesdyskeratosiscongenita
AT patelmanthan germlinethymidylatesynthasedeficiencyimpactsnucleotidemetabolismandcausesdyskeratosiscongenita
AT pontikosnikolas germlinethymidylatesynthasedeficiencyimpactsnucleotidemetabolismandcausesdyskeratosiscongenita
AT coddveryan germlinethymidylatesynthasedeficiencyimpactsnucleotidemetabolismandcausesdyskeratosiscongenita
AT vulliamytom germlinethymidylatesynthasedeficiencyimpactsnucleotidemetabolismandcausesdyskeratosiscongenita
AT dokalinderjeet germlinethymidylatesynthasedeficiencyimpactsnucleotidemetabolismandcausesdyskeratosiscongenita