Trichothiodystrophy (TTD) is a rare hereditary disease whose prominent feature is brittle hair. Additional clinical signs are physical and neurodevelopmental abnormalities and in about half of the cases hypersensitivity to UV radiation. The photosensitive form of TTD (PS-TTD) is most commonly caused by mutations in the ERCC2/XPD gene encoding a subunit of the transcription/DNA repair complex TFIIH. Here we report novel ERCC2/XPD mutations affecting proper protein folding, which generate thermo-labile forms of XPD associated with thermo-sensitive phenotypes characterized by reversible aggravation of TTD clinical signs during episodes of fever. In patient cells, the newly identified XPD variants result in thermo-instability of the whole TFIIH complex and consequent temperature-dependent defects in DNA repair and transcription. Improving the protein folding process by exposing patient cells to low temperature or to the chemical chaperone glycerol allowed rescue of TFIIH thermo-instability and a concomitant recovery of the complex activities. Besides providing a rationale for the peculiar thermo-sensitive clinical features of these new cases, the present findings demonstrate how variations in the cellular concentration of mutated TFIIH impact the cellular functions of the complex and underlie how both quantitative and qualitative TFIIH alterations contribute to TTD clinical features.

TFIIH stabilization recovers the DNA repair and transcription dysfunctions in thermo-sensitive trichothiodystrophy

Lanzafame M
Primo
;
Nardo T
Secondo
;
Ricotti R;Stefanini M;Orioli D
Co-ultimo
Funding Acquisition
;
Botta E
Co-ultimo
2022

Abstract

Trichothiodystrophy (TTD) is a rare hereditary disease whose prominent feature is brittle hair. Additional clinical signs are physical and neurodevelopmental abnormalities and in about half of the cases hypersensitivity to UV radiation. The photosensitive form of TTD (PS-TTD) is most commonly caused by mutations in the ERCC2/XPD gene encoding a subunit of the transcription/DNA repair complex TFIIH. Here we report novel ERCC2/XPD mutations affecting proper protein folding, which generate thermo-labile forms of XPD associated with thermo-sensitive phenotypes characterized by reversible aggravation of TTD clinical signs during episodes of fever. In patient cells, the newly identified XPD variants result in thermo-instability of the whole TFIIH complex and consequent temperature-dependent defects in DNA repair and transcription. Improving the protein folding process by exposing patient cells to low temperature or to the chemical chaperone glycerol allowed rescue of TFIIH thermo-instability and a concomitant recovery of the complex activities. Besides providing a rationale for the peculiar thermo-sensitive clinical features of these new cases, the present findings demonstrate how variations in the cellular concentration of mutated TFIIH impact the cellular functions of the complex and underlie how both quantitative and qualitative TFIIH alterations contribute to TTD clinical features.
2022
Istituto di Genetica Molecolare "Luigi Luca Cavalli Sforza"
Inglese
43
12
2222
2233
12
http://www.scopus.com/inward/record.url?eid=2-s2.0-85141430196&partnerID=q2rCbXpz
Esperti anonimi
ERCC2 mutations
TFIIH
XPD
thermo-sensitivity
trichothiodystrophy
Human Mutation is a peer-reviewed journal that offers publication of original research & reviews on broad aspects of mutation research in humans. Reports of novel DNA variations and their phenotypic consequences, reports of SNPs demonstrated as valuable for genomic analysis, descriptions of new molecular detection methods, and novel approaches to clinical diagnosis are welcomed. Novel reports of gene organization at the genomic level, reported in the context of mutation investigation, may be considered. The journal provides a unique forum for the exchange of ideas, methods, and applications of interest to molecular, human, and medical geneticists in academic, industrial, and clinical research settings worldwide. The journal's articles appear in a wide range of abstracting and indexing databases, and are covered by numerous other services, as given in the full list below. Indexing Information CAS: Chemical Abstracts Service (ACS) Embase (Elsevier) Emerging Sources Citation Index (Clarivate Analytics) MEDLINE/PubMed (NLM) ProQuest Sage Science Citation Index (Clarivate Analytics) Science Citation Index Expanded (Clarivate Analytics) Human Mutation deposits all articles in PMC (PubMed Central).
Internazionale
Stampa
11
info:eu-repo/semantics/article
262
Lanzafame, M; Nardo, T; Ricotti, R; Pantaleoni, C; D'Arrigo, S; Stanzial, F; Benedicenti, F; Thomas, Ma; Stefanini, M; Orioli, D; Botta, E
01 Contributo su Rivista::01.01 Articolo in rivista
open
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/431517
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