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Deep-intronic ABCA4 variants explain missing heritability in Stargardt disease and allow correction of splice defects by antisense oligonucleotides

Authors :
Sangermano, R
Garanto, A.
Khan, M. (Mubeen)
Runhart, E.H.
Bauwens, M.
Bax, N.M.A. (Klaas)
Born, L.I. (Ingeborgh) van den
Khan, M.I. (Muhammad)
Cornelis, S.S.
Verheij, J
Pott, J.W.R.
Thiadens, A.
Klaver, C.C.W. (Caroline)
Puech, B.
Meunier, I.
Naessens, S.
Arno, G.
Fakin, A.
Carss, K.J.
Raymond, FL
Webster, A.R. (Andrew)
Dhaenens, C.M.
Stohr, H.
Grassmann, F. (Felix)
Weber, B.H.F. (Bernhard)
Hoyng, C.B. (Carel)
De Baere, E. (Elfride)
Albert, S.
Collin, R.W.J. (Rob)
Cremers, F.P.M. (Frans)
Sangermano, R
Garanto, A.
Khan, M. (Mubeen)
Runhart, E.H.
Bauwens, M.
Bax, N.M.A. (Klaas)
Born, L.I. (Ingeborgh) van den
Khan, M.I. (Muhammad)
Cornelis, S.S.
Verheij, J
Pott, J.W.R.
Thiadens, A.
Klaver, C.C.W. (Caroline)
Puech, B.
Meunier, I.
Naessens, S.
Arno, G.
Fakin, A.
Carss, K.J.
Raymond, FL
Webster, A.R. (Andrew)
Dhaenens, C.M.
Stohr, H.
Grassmann, F. (Felix)
Weber, B.H.F. (Bernhard)
Hoyng, C.B. (Carel)
De Baere, E. (Elfride)
Albert, S.
Collin, R.W.J. (Rob)
Cremers, F.P.M. (Frans)
Publication Year :
2019

Abstract

Purpose: Using exome sequencing, the underlying variants in many persons with autosomal recessive diseases remain undetected. We explored autosomal recessive Stargardt disease (STGD1) as a model to identify the missing heritability. Methods: Sequencing of ABCA4 was performed in 8 STGD1 cases with one variant and p.Asn1868Ile in trans, 25 cases with one variant, and 3 cases with no ABCA4 variant. The effect of intronic variants was analyzed using in vitro splice assays in HEK293T cells and patient-derived fibroblasts. Antisense oligonucleotides were used to correct splice defects. Results: In 24 of the probands (67%), one known and five novel deep-intronic variants were found. The five novel variants resulted in messenger RNA pseudoexon inclusions, due to strengthening of cryptic splice sites or by disrupting a splicing silencer motif. Variant c.769-784C>T showed partial insertion of a pseudoexon and was found in cis with c.5603A>T (p.Asn1868Ile), so its causal role could not be fully established. Variant c.4253+43G>A resulted in partial skipping of exon 28. Remarkably, antisense oligonucleotides targeting the aberrant splice processes resulted in (partial) correction of all splicing defects. Conclusion: Our data demonstrate the importance of assessing noncoding variants in genetic diseases, and show the great potential of splice modulation therapy for deep-intronic variants.

Details

Database :
OAIster
Notes :
application/pdf, Genetics in Medicine vol. 21 no. 8, pp. 1751-1760, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1121177334
Document Type :
Electronic Resource
Full Text :
https://doi.org/10.1038.s41436-018-0414-9