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Cellular ciliary phenotyping indicates pathogenicity of novel variants in IFT140 and confirms a Mainzer–Saldino syndrome diagnosis

BACKGROUND: Mainzer–Saldino syndrome (MZSDS) is a skeletal ciliopathy and part of the short-rib thoracic dysplasia (SRTD) group of ciliary disorders. The main characteristics of MZSDS are short limbs, mild narrow thorax, blindness, and renal failure. Thus far, variants in two genes are associated wi...

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Autores principales: Oud, Machteld M., Latour, Brooke L., Bakey, Zeineb, Letteboer, Stef J., Lugtenberg, Dorien, Wu, Ka Man, Cornelissen, Elisabeth A. M., Yntema, Helger G., Schmidts, Miriam, Roepman, Ronald, Bongers, Ernie M. H. F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6247778/
https://www.ncbi.nlm.nih.gov/pubmed/30479745
http://dx.doi.org/10.1186/s13630-018-0055-2
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author Oud, Machteld M.
Latour, Brooke L.
Bakey, Zeineb
Letteboer, Stef J.
Lugtenberg, Dorien
Wu, Ka Man
Cornelissen, Elisabeth A. M.
Yntema, Helger G.
Schmidts, Miriam
Roepman, Ronald
Bongers, Ernie M. H. F.
author_facet Oud, Machteld M.
Latour, Brooke L.
Bakey, Zeineb
Letteboer, Stef J.
Lugtenberg, Dorien
Wu, Ka Man
Cornelissen, Elisabeth A. M.
Yntema, Helger G.
Schmidts, Miriam
Roepman, Ronald
Bongers, Ernie M. H. F.
author_sort Oud, Machteld M.
collection PubMed
description BACKGROUND: Mainzer–Saldino syndrome (MZSDS) is a skeletal ciliopathy and part of the short-rib thoracic dysplasia (SRTD) group of ciliary disorders. The main characteristics of MZSDS are short limbs, mild narrow thorax, blindness, and renal failure. Thus far, variants in two genes are associated with MZSDS: IFT140, and IFT172. In this study, we describe a 1-year-old girl presenting with mild skeletal abnormalities, Leber congenital amaurosis, and bilateral hearing difficulties. For establishing an accurate diagnosis, we combined clinical, molecular, and functional analyses. METHODS: We performed diagnostic whole-exome sequencing (WES) analysis to determine the genetic cause of the disease and analyzed two gene panels, containing all currently known genes in vision disorders, and in hearing impairment. Upon detection of the likely causative variants, ciliary phenotyping was performed in patient urine-derived renal epithelial cells (URECs) and rescue experiments were performed in CRISPR/Cas9-derived Ift140 knock out cells to determine the pathogenicity of the detected variants in vitro. Cilium morphology, cilium length, and intraflagellar transport (IFT) were evaluated by immunocytochemistry. RESULTS: Diagnostic WES revealed two novel compound heterozygous variants in IFT140, encoding IFT140. Thorough investigation of WES data did not reveal any variants in candidate genes associated with hearing impairment. Patient-derived URECs revealed an accumulation of IFT-B protein IFT88 at the ciliary tip in 41% of the cells indicative of impaired retrograde IFT, while this was absent in cilia from control URECs. Furthermore, transfection of CRISPR/Cas9-derived Ift140 knock out cells with an IFT140 construct containing the patient mutation p.Tyr923Asp resulted in a significantly higher percentage of IFT88 tip accumulation than transfection with the wild-type IFT140 construct. CONCLUSIONS: By combining the clinical, genetic, and functional data from this study, we could conclude that the patient has SRTD9, also called Mainzer–Saldino syndrome, caused by variants in IFT140. We suggest the possibility that variants in IFT140 may underlie hearing impairment. Moreover, we show that urine provides an excellent source to obtain patient-derived cells in a non-invasive manner to study the pathogenicity of variants detected by genetic testing. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (10.1186/s13630-018-0055-2) contains supplementary material, which is available to authorized users.
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spelling pubmed-62477782018-11-26 Cellular ciliary phenotyping indicates pathogenicity of novel variants in IFT140 and confirms a Mainzer–Saldino syndrome diagnosis Oud, Machteld M. Latour, Brooke L. Bakey, Zeineb Letteboer, Stef J. Lugtenberg, Dorien Wu, Ka Man Cornelissen, Elisabeth A. M. Yntema, Helger G. Schmidts, Miriam Roepman, Ronald Bongers, Ernie M. H. F. Cilia Short Report BACKGROUND: Mainzer–Saldino syndrome (MZSDS) is a skeletal ciliopathy and part of the short-rib thoracic dysplasia (SRTD) group of ciliary disorders. The main characteristics of MZSDS are short limbs, mild narrow thorax, blindness, and renal failure. Thus far, variants in two genes are associated with MZSDS: IFT140, and IFT172. In this study, we describe a 1-year-old girl presenting with mild skeletal abnormalities, Leber congenital amaurosis, and bilateral hearing difficulties. For establishing an accurate diagnosis, we combined clinical, molecular, and functional analyses. METHODS: We performed diagnostic whole-exome sequencing (WES) analysis to determine the genetic cause of the disease and analyzed two gene panels, containing all currently known genes in vision disorders, and in hearing impairment. Upon detection of the likely causative variants, ciliary phenotyping was performed in patient urine-derived renal epithelial cells (URECs) and rescue experiments were performed in CRISPR/Cas9-derived Ift140 knock out cells to determine the pathogenicity of the detected variants in vitro. Cilium morphology, cilium length, and intraflagellar transport (IFT) were evaluated by immunocytochemistry. RESULTS: Diagnostic WES revealed two novel compound heterozygous variants in IFT140, encoding IFT140. Thorough investigation of WES data did not reveal any variants in candidate genes associated with hearing impairment. Patient-derived URECs revealed an accumulation of IFT-B protein IFT88 at the ciliary tip in 41% of the cells indicative of impaired retrograde IFT, while this was absent in cilia from control URECs. Furthermore, transfection of CRISPR/Cas9-derived Ift140 knock out cells with an IFT140 construct containing the patient mutation p.Tyr923Asp resulted in a significantly higher percentage of IFT88 tip accumulation than transfection with the wild-type IFT140 construct. CONCLUSIONS: By combining the clinical, genetic, and functional data from this study, we could conclude that the patient has SRTD9, also called Mainzer–Saldino syndrome, caused by variants in IFT140. We suggest the possibility that variants in IFT140 may underlie hearing impairment. Moreover, we show that urine provides an excellent source to obtain patient-derived cells in a non-invasive manner to study the pathogenicity of variants detected by genetic testing. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (10.1186/s13630-018-0055-2) contains supplementary material, which is available to authorized users. BioMed Central 2018-02-23 /pmc/articles/PMC6247778/ /pubmed/30479745 http://dx.doi.org/10.1186/s13630-018-0055-2 Text en © The Author(s) 2018 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.
spellingShingle Short Report
Oud, Machteld M.
Latour, Brooke L.
Bakey, Zeineb
Letteboer, Stef J.
Lugtenberg, Dorien
Wu, Ka Man
Cornelissen, Elisabeth A. M.
Yntema, Helger G.
Schmidts, Miriam
Roepman, Ronald
Bongers, Ernie M. H. F.
Cellular ciliary phenotyping indicates pathogenicity of novel variants in IFT140 and confirms a Mainzer–Saldino syndrome diagnosis
title Cellular ciliary phenotyping indicates pathogenicity of novel variants in IFT140 and confirms a Mainzer–Saldino syndrome diagnosis
title_full Cellular ciliary phenotyping indicates pathogenicity of novel variants in IFT140 and confirms a Mainzer–Saldino syndrome diagnosis
title_fullStr Cellular ciliary phenotyping indicates pathogenicity of novel variants in IFT140 and confirms a Mainzer–Saldino syndrome diagnosis
title_full_unstemmed Cellular ciliary phenotyping indicates pathogenicity of novel variants in IFT140 and confirms a Mainzer–Saldino syndrome diagnosis
title_short Cellular ciliary phenotyping indicates pathogenicity of novel variants in IFT140 and confirms a Mainzer–Saldino syndrome diagnosis
title_sort cellular ciliary phenotyping indicates pathogenicity of novel variants in ift140 and confirms a mainzer–saldino syndrome diagnosis
topic Short Report
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6247778/
https://www.ncbi.nlm.nih.gov/pubmed/30479745
http://dx.doi.org/10.1186/s13630-018-0055-2
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