Altered PLP1 splicing causes hypomyelination of early myelinating structures
Objective The objective of this study was to investigate the genetic etiology of the X‐linked disorder “Hypomyelination of Early Myelinating Structures” (HEMS). Methods We included 16 patients from 10 families diagnosed with HEMS by brain MRI criteria. Exome sequencing was used to search for causal...
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Published in | Annals of clinical and translational neurology Vol. 2; no. 6; pp. 648 - 661 |
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Main Authors | , , , , , , , , , , , , , , , , , , , , , , , , , |
Format | Journal Article |
Language | English |
Published |
United States
John Wiley & Sons, Ltd
01.06.2015
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Online Access | Get full text |
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Summary: | Objective
The objective of this study was to investigate the genetic etiology of the X‐linked disorder “Hypomyelination of Early Myelinating Structures” (HEMS).
Methods
We included 16 patients from 10 families diagnosed with HEMS by brain MRI criteria. Exome sequencing was used to search for causal mutations. In silico analysis of effects of the mutations on splicing and RNA folding was performed. In vitro gene splicing was examined in RNA from patients’ fibroblasts and an immortalized immature oligodendrocyte cell line after transfection with mutant minigene splicing constructs.
Results
All patients had unusual hemizygous mutations of PLP1 located in exon 3B (one deletion, one missense and two silent), which is spliced out in isoform DM20, or in intron 3 (five mutations). The deletion led to truncation of PLP1, but not DM20. Four mutations were predicted to affect PLP1/DM20 alternative splicing by creating exonic splicing silencer motifs or new splice donor sites or by affecting the local RNA structure of the PLP1 splice donor site. Four deep intronic mutations were predicted to destabilize a long‐distance interaction structure in the secondary PLP1 RNA fragment involved in regulating PLP1/DM20 alternative splicing. Splicing studies in fibroblasts and transfected cells confirmed a decreased PLP1/DM20 ratio.
Interpretation
Brain structures that normally myelinate early are poorly myelinated in HEMS, while they are the best myelinated structures in Pelizaeus–Merzbacher disease, also caused by PLP1 alterations. Our data extend the phenotypic spectrum of PLP1‐related disorders indicating that normal PLP1/DM20 alternative splicing is essential for early myelination and support the need to include intron 3 in diagnostic sequencing. |
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Bibliography: | ObjectType-Article-1 SourceType-Scholarly Journals-1 ObjectType-Feature-2 content type line 23 These authors share senior authorship. Funding Information The study received financial support from ZonMw TOP grant 91211005 (to S. H. K. and M. S. v. d. K.), the Optimix Foundation for Scientific Research (to M. S. v. d. K.), the ELA Foundation (ELA Grant 2009-045C3 and ELA Grant 2012-044PS5 to E. B.), the European Research Council (ERC Starting Grant 260888 to E. M. V.), the Fonds de Recherche du Québec en Santé (Research Scholar Junior 1 of FRQS) (to G. B.), the Fondation du Grand Defi Pierre Lavoie (grants to G. B.), the Canadian Institutes of Health Research (#301221 grant to C. D. M. v. K.), the Michael Smith Foundation for Health Research Scholar award (to C. D. M. v. K.), the National Institutes of Health (P20GM103464 and R01NS058978 to G. M. H.), the Kylan Hunter Foundation and the PMD Foundation (to G. M. H.). These authors share first authorship. |
ISSN: | 2328-9503 2328-9503 |
DOI: | 10.1002/acn3.203 |