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Using single molecule Molecular Inversion Probes as a cost‐effective, high‐throughput sequencing approach to target all genes and loci associated with macular diseases

Macular degenerations (MDs) are a subgroup of retinal disorders characterized by central vision loss. Knowledge is still lacking on the extent of genetic and nongenetic factors influencing inherited MD (iMD) and age‐related MD (AMD) expression. Single molecule Molecular Inversion Probes (smMIPs) hav...

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Autores principales: Hitti‐Malin, Rebekkah J., Dhaenens, Claire‐Marie, Panneman, Daan M., Corradi, Zelia, Khan, Mubeen, den Hollander, Anneke I., Farrar, G. Jane, Gilissen, Christian, Hoischen, Alexander, van de Vorst, Maartje, Bults, Femke, Boonen, Erica G. M., Saunders, Patrick, Roosing, Susanne, Cremers, Frans P. M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10092144/
https://www.ncbi.nlm.nih.gov/pubmed/36259723
http://dx.doi.org/10.1002/humu.24489
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author Hitti‐Malin, Rebekkah J.
Dhaenens, Claire‐Marie
Panneman, Daan M.
Corradi, Zelia
Khan, Mubeen
den Hollander, Anneke I.
Farrar, G. Jane
Gilissen, Christian
Hoischen, Alexander
van de Vorst, Maartje
Bults, Femke
Boonen, Erica G. M.
Saunders, Patrick
Roosing, Susanne
Cremers, Frans P. M.
author_facet Hitti‐Malin, Rebekkah J.
Dhaenens, Claire‐Marie
Panneman, Daan M.
Corradi, Zelia
Khan, Mubeen
den Hollander, Anneke I.
Farrar, G. Jane
Gilissen, Christian
Hoischen, Alexander
van de Vorst, Maartje
Bults, Femke
Boonen, Erica G. M.
Saunders, Patrick
Roosing, Susanne
Cremers, Frans P. M.
author_sort Hitti‐Malin, Rebekkah J.
collection PubMed
description Macular degenerations (MDs) are a subgroup of retinal disorders characterized by central vision loss. Knowledge is still lacking on the extent of genetic and nongenetic factors influencing inherited MD (iMD) and age‐related MD (AMD) expression. Single molecule Molecular Inversion Probes (smMIPs) have proven effective in sequencing the ABCA4 gene in patients with Stargardt disease to identify associated coding and noncoding variation, however many MD patients still remain genetically unexplained. We hypothesized that the missing heritability of MDs may be revealed by smMIPs‐based sequencing of all MD‐associated genes and risk factors. Using 17,394 smMIPs, we sequenced the coding regions of 105 iMD and AMD‐associated genes and noncoding or regulatory loci, known pseudo‐exons, and the mitochondrial genome in two test cohorts that were previously screened for variants in ABCA4. Following detailed sequencing analysis of 110 probands, a diagnostic yield of 38% was observed. This established an ‘‘MD‐smMIPs panel,” enabling a genotype‐first approach in a high‐throughput and cost‐effective manner, whilst achieving uniform and high coverage across targets. Further analysis will identify known and novel variants in MD‐associated genes to offer an accurate clinical diagnosis to patients. Furthermore, this will reveal new genetic associations for MD and potential genetic overlaps between iMD and AMD.
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spelling pubmed-100921442023-04-13 Using single molecule Molecular Inversion Probes as a cost‐effective, high‐throughput sequencing approach to target all genes and loci associated with macular diseases Hitti‐Malin, Rebekkah J. Dhaenens, Claire‐Marie Panneman, Daan M. Corradi, Zelia Khan, Mubeen den Hollander, Anneke I. Farrar, G. Jane Gilissen, Christian Hoischen, Alexander van de Vorst, Maartje Bults, Femke Boonen, Erica G. M. Saunders, Patrick Roosing, Susanne Cremers, Frans P. M. Hum Mutat Research Articles Macular degenerations (MDs) are a subgroup of retinal disorders characterized by central vision loss. Knowledge is still lacking on the extent of genetic and nongenetic factors influencing inherited MD (iMD) and age‐related MD (AMD) expression. Single molecule Molecular Inversion Probes (smMIPs) have proven effective in sequencing the ABCA4 gene in patients with Stargardt disease to identify associated coding and noncoding variation, however many MD patients still remain genetically unexplained. We hypothesized that the missing heritability of MDs may be revealed by smMIPs‐based sequencing of all MD‐associated genes and risk factors. Using 17,394 smMIPs, we sequenced the coding regions of 105 iMD and AMD‐associated genes and noncoding or regulatory loci, known pseudo‐exons, and the mitochondrial genome in two test cohorts that were previously screened for variants in ABCA4. Following detailed sequencing analysis of 110 probands, a diagnostic yield of 38% was observed. This established an ‘‘MD‐smMIPs panel,” enabling a genotype‐first approach in a high‐throughput and cost‐effective manner, whilst achieving uniform and high coverage across targets. Further analysis will identify known and novel variants in MD‐associated genes to offer an accurate clinical diagnosis to patients. Furthermore, this will reveal new genetic associations for MD and potential genetic overlaps between iMD and AMD. John Wiley and Sons Inc. 2022-10-31 2022-12 /pmc/articles/PMC10092144/ /pubmed/36259723 http://dx.doi.org/10.1002/humu.24489 Text en © 2022 The Authors. Human Mutation published by Wiley Periodicals LLC. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Research Articles
Hitti‐Malin, Rebekkah J.
Dhaenens, Claire‐Marie
Panneman, Daan M.
Corradi, Zelia
Khan, Mubeen
den Hollander, Anneke I.
Farrar, G. Jane
Gilissen, Christian
Hoischen, Alexander
van de Vorst, Maartje
Bults, Femke
Boonen, Erica G. M.
Saunders, Patrick
Roosing, Susanne
Cremers, Frans P. M.
Using single molecule Molecular Inversion Probes as a cost‐effective, high‐throughput sequencing approach to target all genes and loci associated with macular diseases
title Using single molecule Molecular Inversion Probes as a cost‐effective, high‐throughput sequencing approach to target all genes and loci associated with macular diseases
title_full Using single molecule Molecular Inversion Probes as a cost‐effective, high‐throughput sequencing approach to target all genes and loci associated with macular diseases
title_fullStr Using single molecule Molecular Inversion Probes as a cost‐effective, high‐throughput sequencing approach to target all genes and loci associated with macular diseases
title_full_unstemmed Using single molecule Molecular Inversion Probes as a cost‐effective, high‐throughput sequencing approach to target all genes and loci associated with macular diseases
title_short Using single molecule Molecular Inversion Probes as a cost‐effective, high‐throughput sequencing approach to target all genes and loci associated with macular diseases
title_sort using single molecule molecular inversion probes as a cost‐effective, high‐throughput sequencing approach to target all genes and loci associated with macular diseases
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10092144/
https://www.ncbi.nlm.nih.gov/pubmed/36259723
http://dx.doi.org/10.1002/humu.24489
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