Literature DB >> 30323018

Specific combinations of biallelic POLR3A variants cause Wiedemann-Rautenstrauch syndrome.

Bernd Wollnik1, Marco Tartaglia2, Raoul C Hennekam3, Stefano Paolacci4, Yun Li1, Emanuele Agolini2, Emanuele Bellacchio2, Carlos E Arboleda-Bustos5, Dido Carrero6, Debora Bertola7, Lihadh Al-Gazali8, Mariel Alders9, Janine Altmüller10, Gonzalo Arboleda5, Filippo Beleggia11, Alessandro Bruselles12, Andrea Ciolfi2, Gabriele Gillessen-Kaesbach13, Thomas Krieg14, Shehla Mohammed15, Christian Müller1, Antonio Novelli2, Jenny Ortega5, Adrian Sandoval5, Gloria Velasco6, Gökhan Yigit1, Humberto Arboleda5, Carlos Lopez-Otin6.   

Abstract

BACKGROUND: Wiedemann-Rautenstrauch syndrome (WRS) is a form of segmental progeria presenting neonatally, characterised by growth retardation, sparse scalp hair, generalised lipodystrophy with characteristic local fatty tissue accumulations and unusual face. We aimed to understand its molecular cause.
METHODS: We performed exome sequencing in two families, targeted sequencing in 10 other families and performed in silico modelling studies and transcript processing analyses to explore the structural and functional consequences of the identified variants.
RESULTS: Biallelic POLR3A variants were identified in eight affected individuals and monoallelic variants of the same gene in four other individuals. In the latter, lack of genetic material precluded further analyses. Multiple variants were found to affect POLR3A transcript processing and were mostly located in deep intronic regions, making clinical suspicion fundamental to detection. While biallelic POLR3A variants have been previously reported in 4H syndrome and adolescent-onset progressive spastic ataxia, recurrent haplotypes specifically occurring in individuals with WRS were detected. All WRS-associated POLR3A amino acid changes were predicted to perturb substantially POLR3A structure/function.
CONCLUSION: Biallelic mutations in POLR3A, which encodes for the largest subunit of the DNA-dependent RNA polymerase III, underlie WRS. No isolated functional sites in POLR3A explain the phenotype variability in POLR3A-related disorders. We suggest that specific combinations of compound heterozygous variants must be present to cause the WRS phenotype. Our findings expand the molecular mechanisms contributing to progeroid disorders. © Author(s) (or their employer(s)) 2018. No commercial re-use. See rights and permissions. Published by BMJ.

Entities:  

Keywords:  POLR3A; aetiology; modelling; progeroid; wiedemann-rautenstrauch syndrome

Mesh:

Substances:

Year:  2018        PMID: 30323018     DOI: 10.1136/jmedgenet-2018-105528

Source DB:  PubMed          Journal:  J Med Genet        ISSN: 0022-2593            Impact factor:   6.318


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