Osborn, DPS;
Pond, HL;
Mazaheri, N;
Dejardin, J;
Munn, CJ;
Mushref, K;
Cauley, ES;
Moroni, I;
Pasanisi, MB;
Sellars, EA;
et al.
Osborn, DPS; Pond, HL; Mazaheri, N; Dejardin, J; Munn, CJ; Mushref, K; Cauley, ES; Moroni, I; Pasanisi, MB; Sellars, EA; Hill, RS; Partlow, JN; Willaert, RK; Bharj, J; Malamiri, RA; Galehdari, H; Shariati, G; Maroofian, R; Mora, M; Swan, LE; Voit, T; Conti, FJ; Jamshidi, Y; Manzini, MC
(2017)
Mutations in INPP5K Cause a Form of Congenital Muscular Dystrophy Overlapping Marinesco-Sjögren Syndrome and Dystroglycanopathy.
Am J Hum Genet, 100 (3).
pp. 537-545.
ISSN 1537-6605
https://doi.org/10.1016/j.ajhg.2017.01.019
SGUL Authors: Jamshidi, Yalda Osborn, Daniel Peter Sayer
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Abstract
Congenital muscular dystrophies display a wide phenotypic and genetic heterogeneity. The combination of clinical, biochemical, and molecular genetic findings must be considered to obtain the precise diagnosis and provide appropriate genetic counselling. Here we report five individuals from four families presenting with variable clinical features including muscular dystrophy with a reduction in dystroglycan glycosylation, short stature, intellectual disability, and cataracts, overlapping both the dystroglycanopathies and Marinesco-Sjögren syndrome. Whole-exome sequencing revealed homozygous missense and compound heterozygous mutations in INPP5K in the affected members of each family. INPP5K encodes the inositol polyphosphate-5-phosphatase K, also known as SKIP (skeletal muscle and kidney enriched inositol phosphatase), which is highly expressed in the brain and muscle. INPP5K localizes to both the endoplasmic reticulum and to actin ruffles in the cytoplasm. It has been shown to regulate myoblast differentiation and has also been implicated in protein processing through its interaction with the ER chaperone HSPA5/BiP. We show that morpholino-mediated inpp5k loss of function in the zebrafish results in shortened body axis, microphthalmia with disorganized lens, microcephaly, reduced touch-evoked motility, and highly disorganized myofibers. Altogether these data demonstrate that mutations in INPP5K cause a congenital muscular dystrophy syndrome with short stature, cataracts, and intellectual disability.
Item Type: | Article | ||||||||
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Additional Information: | © 2017 The Author(s). This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/) | ||||||||
Keywords: | INPP5K, Marinesco-Sjögren syndrome, SKIP, cataracts, dystroglycanopathy, inositol phosphatase, intellectual disability, muscular dystrophy, Genetics & Heredity, 06 Biological Sciences, 11 Medical And Health Sciences | ||||||||
SGUL Research Institute / Research Centre: | Academic Structure > Molecular and Clinical Sciences Research Institute (MCS) Academic Structure > Molecular and Clinical Sciences Research Institute (MCS) > Cell Sciences (INCCCS) |
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Journal or Publication Title: | Am J Hum Genet | ||||||||
ISSN: | 1537-6605 | ||||||||
Language: | eng | ||||||||
Dates: |
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Publisher License: | Creative Commons: Attribution-Noncommercial-No Derivative Works 4.0 | ||||||||
PubMed ID: | 28190459 | ||||||||
Go to PubMed abstract | |||||||||
URI: | https://openaccess.sgul.ac.uk/id/eprint/108451 | ||||||||
Publisher's version: | https://doi.org/10.1016/j.ajhg.2017.01.019 |
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