Biallelic TUFT1 variants cause woolly hair, superficial skin fragility and desmosomal defects

Author:

Jackson Adam12ORCID,Moss Celia3ORCID,Chandler Kate E12,Balboa Pablo Lopez4,Bageta Maria L4,Petrof Gabriela4,Martinez Anna E4,Liu Lu5,Guy Alyson5,Mellerio Jemima E6,Lee John Y W6,Ogboli Malobi3,Ryan Gavin7,McGrath John A6ORCID,Banka Siddharth12ORCID,

Affiliation:

1. Division of Evolution, Infection and Genomics, School of Biological Sciences, Faculty of Biology, Medicine and Health, University of Manchester , Manchester , UK

2. Manchester Centre for Genomic Medicine, St Mary’s Hospital, Manchester University NHS Foundation Trust, Health Innovation Manchester , Manchester , UK

3. Department of Dermatology, Birmingham Children’s Hospital, Birmingham Women’s and Children’s NHS Foundation Trust , Birmingham , UK

4. Department of Dermatology, Great Ormond Street Hospital NHS Foundation Trust , London , UK

5. Viapath, National Diagnostic Epidermolysis Bullosa Laboratory, Guy’s Hospital , London , UK

6. St John’s Institute of Dermatology, King’s College London (Guy’s Campus) , London , UK

7. West Midlands Regional Genetics Laboratory, Birmingham Women’s and Children’s NHS Foundation Trust , Birmingham , UK

Abstract

Abstract Background Desmosomes are complex cell junction structures that connect intermediate filaments providing strong cell-to-cell adhesion in tissues exposed to mechanical stress. Objectives To identify causal variants in individuals with woolly hair and skin fragility of unknown genetic cause. Methods This research was conducted using whole-genome sequencing, whole-exome sequencing, clinical phenotyping, haplotype analysis, single-cell RNA sequencing data analysis, immunofluorescence microscopy and transmission electron microscopy. Results We identified homozygous predicted loss-of-function tuftelin-1 (TUFT1) variants in nine individuals, from three families, with woolly hair and skin fragility. One donor splice-site variant, c.60+1G>A, was present in two families, while a frameshift variant, p.Gln189Asnfs*49, was found in the third family. Haplotype analysis showed the c.60+1G>A substitution to be a founder variant in the Irish population that likely arose approximately 20 generations ago. Human and mouse single-cell RNA sequencing data showed TUFT1 expression to be enriched in the hair dermal sheath and keratinocytes. TUFT1 expression was highly correlated with genes encoding desmosomal components implicated in diseases with phenotypes that overlap with the cohort presented here. Immunofluorescence showed tuftelin-1 to be mainly localized to the peripheral cell membranes of keratinocytes in normal skin. Skin samples from individuals with TUFT1 variants showed markedly reduced immunoreactivity for tuftelin-1, with a loss of the keratinocyte cell membrane labelling. Light microscopy revealed keratinocyte adhesion, mild hyperkeratosis and areas of superficial peeling. Transmission electron microscopy showed panepidermal acantholysis with widening of intercellular spaces throughout the epidermis and desmosomal detachment through the inner plaques. Conclusions Biallelic loss-of-function TUFT1 variants cause a new autosomal recessive skin/hair disorder characterized by woolly hair texture and early-onset skin fragility. Tuftelin-1 has a role in desmosomal integrity and function.

Funder

European Union’s Horizon 2020 research and innovation programme

Publisher

Oxford University Press (OUP)

Subject

Dermatology

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