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A novel ICK mutation causes ciliary disruption and lethal endocrine-cerebro-osteodysplasia syndrome
by
Venkatesh, Byrappa
, Lee, Hane
, Eskin, Ascia
, Reversade, Bruno
, Ng, Alvin Yu Jin
, Rupar, C. Anthony
, Nelson, Stanley F.
, Kayserili, Hülya
, Siu, Victoria M.
, Oud, Machteld M.
, Lahiry, Piya
, Tohari, Sumanty
, Pazour, Gregory J.
, Arts, Heleen H.
, Bonnard, Carine
, Hegele, Robert A.
, Altunoglu, Umut
, Wu, Ka Man
, de Wagenaar, Nathalie P.
, Mans, Dorus A.
, Roepman, Ronald
in
Biochemistry
/ Biomedical and Life Sciences
/ Cell Biology
/ Developmental Biology
/ Genetic aspects
/ Human Genetics
/ Life Sciences
/ Molecular Medicine
/ Proteins
/ Receptors
2016
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A novel ICK mutation causes ciliary disruption and lethal endocrine-cerebro-osteodysplasia syndrome
by
Venkatesh, Byrappa
, Lee, Hane
, Eskin, Ascia
, Reversade, Bruno
, Ng, Alvin Yu Jin
, Rupar, C. Anthony
, Nelson, Stanley F.
, Kayserili, Hülya
, Siu, Victoria M.
, Oud, Machteld M.
, Lahiry, Piya
, Tohari, Sumanty
, Pazour, Gregory J.
, Arts, Heleen H.
, Bonnard, Carine
, Hegele, Robert A.
, Altunoglu, Umut
, Wu, Ka Man
, de Wagenaar, Nathalie P.
, Mans, Dorus A.
, Roepman, Ronald
in
Biochemistry
/ Biomedical and Life Sciences
/ Cell Biology
/ Developmental Biology
/ Genetic aspects
/ Human Genetics
/ Life Sciences
/ Molecular Medicine
/ Proteins
/ Receptors
2016
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A novel ICK mutation causes ciliary disruption and lethal endocrine-cerebro-osteodysplasia syndrome
by
Venkatesh, Byrappa
, Lee, Hane
, Eskin, Ascia
, Reversade, Bruno
, Ng, Alvin Yu Jin
, Rupar, C. Anthony
, Nelson, Stanley F.
, Kayserili, Hülya
, Siu, Victoria M.
, Oud, Machteld M.
, Lahiry, Piya
, Tohari, Sumanty
, Pazour, Gregory J.
, Arts, Heleen H.
, Bonnard, Carine
, Hegele, Robert A.
, Altunoglu, Umut
, Wu, Ka Man
, de Wagenaar, Nathalie P.
, Mans, Dorus A.
, Roepman, Ronald
in
Biochemistry
/ Biomedical and Life Sciences
/ Cell Biology
/ Developmental Biology
/ Genetic aspects
/ Human Genetics
/ Life Sciences
/ Molecular Medicine
/ Proteins
/ Receptors
2016
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A novel ICK mutation causes ciliary disruption and lethal endocrine-cerebro-osteodysplasia syndrome
Journal Article
A novel ICK mutation causes ciliary disruption and lethal endocrine-cerebro-osteodysplasia syndrome
2016
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Overview
Background
Endocrine-cerebro-osteodysplasia (ECO) syndrome [MIM:612651] caused by a recessive mutation (p.R272Q) in Intestinal cell kinase (ICK) shows significant clinical overlap with ciliary disorders. Similarities are strongest between ECO syndrome, the Majewski and Mohr-Majewski short-rib thoracic dysplasia (SRTD) with polydactyly syndromes, and hydrolethalus syndrome. In this study, we present a novel homozygous
ICK
mutation in a fetus with ECO syndrome and compare the effect of this mutation with the previously reported ICK variant on ciliogenesis and cilium morphology.
Results
Through homozygosity mapping and whole-exome sequencing, we identified a second variant (c.358G > T; p.G120C) in
ICK
in a Turkish fetus presenting with ECO syndrome. In vitro studies of wild-type and mutant mRFP-ICK (p.G120C and p.R272Q) revealed that, in contrast to the wild-type protein that localizes along the ciliary axoneme and/or is present in the ciliary base, mutant proteins rather enrich in the ciliary tip. In addition, immunocytochemistry revealed a decreased number of cilia in ICK p.R272Q-affected cells.
Conclusions
Through identification of a novel
ICK
mutation, we confirm that disruption of
ICK
causes ECO syndrome, which clinically overlaps with the spectrum of ciliopathies. Expression of ICK-mutated proteins result in an abnormal ciliary localization compared to wild-type protein. Primary fibroblasts derived from an individual with ECO syndrome display ciliogenesis defects. In aggregate, our findings are consistent with recent reports that show that ICK regulates ciliary biology in vitro and in mice, confirming that ECO syndrome is a severe ciliopathy.
Publisher
BioMed Central,BioMed Central Ltd
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