Recurrent TTN metatranscript-only c.39974-11T>G splice variant associated with autosomal recessive arthrogryposis multiplex congenita and myopathy.

TitleRecurrent TTN metatranscript-only c.39974-11T>G splice variant associated with autosomal recessive arthrogryposis multiplex congenita and myopathy.
Publication TypeJournal Article
Year of Publication2020
AuthorsBryen, SJ, Ewans, LJ, Pinner, J, MacLennan, SC, Donkervoort, S, Castro, D, Topf, A, O'Grady, G, Cummings, B, Chao, KR, Weisburd, B, Francioli, L, Faiz, F, Bournazos, AM, Hu, Y, Grosmann, C, Malicki, DM, Doyle, H, Witting, N, Vissing, J, Claeys, KG, Urankar, K, Beleza-Meireles, A, Baptista, J, Ellard, S, Savarese, M, Johari, M, Vihola, A, Udd, B, Majumdar, A, Straub, V, Bönnemann, CG, MacArthur, DG, Davis, MR, Cooper, ST
JournalHum Mutat
Volume41
Issue2
Pagination403-411
Date Published2020 02
ISSN1098-1004
Abstract

We present eight families with arthrogryposis multiplex congenita and myopathy bearing a TTN intron 213 extended splice-site variant (NM_001267550.1:c.39974-11T>G), inherited in trans with a second pathogenic TTN variant. Muscle-derived RNA studies of three individuals confirmed mis-splicing induced by the c.39974-11T>G variant; in-frame exon 214 skipping or use of a cryptic 3' splice-site effecting a frameshift. Confounding interpretation of pathogenicity is the absence of exons 213-217 within the described skeletal muscle TTN N2A isoform. However, RNA-sequencing from 365 adult human gastrocnemius samples revealed that 56% specimens predominantly include exons 213-217 in TTN transcripts (inclusion rate ≥66%). Further, RNA-sequencing of five fetal muscle samples confirmed that 4/5 specimens predominantly include exons 213-217 (fifth sample inclusion rate 57%). Contractures improved significantly with age for four individuals, which may be linked to decreased expression of pathogenic fetal transcripts. Our study extends emerging evidence supporting a vital developmental role for TTN isoforms containing metatranscript-only exons.

DOI10.1002/humu.23938
Alternate JournalHum Mutat
PubMed ID31660661
PubMed Central IDPMC7306402
Grant ListUM1 HG008900 / HG / NHGRI NIH HHS / United States