A deep intronic variant in MME causes autosomal recessive Charcot–Marie–Tooth neuropathy through aberrant splicing

Author:

Grosz Bianca R.12ORCID,Parmar Jevin M.34ORCID,Ellis Melina12ORCID,Bryen Samantha56ORCID,Simons Cas56ORCID,Reis Andre L. M.578ORCID,Stevanovski Igor57ORCID,Deveson Ira W.578ORCID,Nicholson Garth29ORCID,Laing Nigel3ORCID,Wallis Mathew1011ORCID,Ravenscroft Gianina3ORCID,Kumar Kishore R.291213ORCID,Vucic Steve214ORCID,Kennerson Marina L.129ORCID

Affiliation:

1. Northcott Neuroscience Laboratory ANZAC Research Institute Sydney New South Wales Australia

2. The University of Sydney Camperdown New South Wales Australia

3. Rare Disease Genetics and Functional Genomics Research Group, Harry Perkins Institute of Medical Research QEII Medical Centre Nedlands Western Australia Australia

4. Centre for Medical Research, Faculty of Health and Medical Sciences The University of Western Australia Perth Western Australia Australia

5. Centre for Population Genomics Garvan Institute of Medical Research, and UNSW Sydney Sydney New South Wales Australia

6. Centre for Population Genomics Murdoch Children's Research Institute Melbourne Victoria Australia

7. Genomics and Inherited Disease Program Garvan Institute of Medical Research Sydney New South Wales Australia

8. Faculty of Medicine University of New South Wales Sydney New South Wales Australia

9. Molecular Medicine Laboratory and Neurology Department Concord Repatriation General Hospital Concord New South Wales Australia

10. Tasmanian Clinical Genetics Service Tasmanian Health Service Hobart Australia

11. School of Medicine and Menzies Institute for Medical Research University of Tasmania Hobart Australia

12. Translational Neurogenomics Group, Genomic and Inherited Disease Program, The Garvan Institute of Medical Research Darlinghurst New South Wales Australia

13. St Vincent's Healthcare Campus, Faculty of Medicine, UNSW Sydney Darlinghurst New South Wales Australia

14. Brain and Nerve Research Centre, The University of Sydney Sydney New South Wales Australia

Abstract

AbstractBackgroundLoss‐of‐function variants in MME (membrane metalloendopeptidase) are a known cause of recessive Charcot–Marie–Tooth Neuropathy (CMT). A deep intronic variant, MME c.1188+428A>G (NM_000902.5), was identified through whole genome sequencing (WGS) of two Australian families with recessive inheritance of axonal CMT using the seqr platform. MME c.1188+428A>G was detected in a homozygous state in Family 1, and in a compound heterozygous state with a known pathogenic MME variant (c.467del; p.Pro156Leufs*14) in Family 2.AimsWe aimed to determine the pathogenicity of the MME c.1188+428A>G variant through segregation and splicing analysis.MethodsThe splicing impact of the deep intronic MME variant c.1188+428A>G was assessed using an in vitro exon‐trapping assay.ResultsThe exon‐trapping assay demonstrated that the MME c.1188+428A>G variant created a novel splice donor site resulting in the inclusion of an 83 bp pseudoexon between MME exons 12 and 13. The incorporation of the pseudoexon into MME transcript is predicted to lead to a coding frameshift and premature termination codon (PTC) in MME exon 14 (p.Ala397ProfsTer47). This PTC is likely to result in nonsense mediated decay (NMD) of MME transcript leading to a pathogenic loss‐of‐function.InterpretationTo our knowledge, this is the first report of a pathogenic deep intronic MME variant causing CMT. This is of significance as deep intronic variants are missed using whole exome sequencing screening methods. Individuals with CMT should be reassessed for deep intronic variants, with splicing impacts being considered in relation to the potential pathogenicity of variants.

Funder

National Health and Medical Research Council

Publisher

Wiley

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