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Structural Variants Create New Topological-Associated Domains and Ectopic Retinal Enhancer-Gene Contact in Dominant Retinitis Pigmentosa

The cause of autosomal-dominant retinitis pigmentosa (adRP), which leads to loss of vision and blindness, was investigated in families lacking a molecular diagnosis. A refined locus for adRP on Chr17q22 (RP17) was delineated through genotyping and genome sequencing, leading to the identification of...

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Autores principales: de Bruijn, Suzanne E., Fiorentino, Alessia, Ottaviani, Daniele, Fanucchi, Stephanie, Melo, Uirá S., Corral-Serrano, Julio C., Mulders, Timo, Georgiou, Michalis, Rivolta, Carlo, Pontikos, Nikolas, Arno, Gavin, Roberts, Lisa, Greenberg, Jacquie, Albert, Silvia, Gilissen, Christian, Aben, Marco, Rebello, George, Mead, Simon, Raymond, F. Lucy, Corominas, Jordi, Smith, Claire E.L., Kremer, Hannie, Downes, Susan, Black, Graeme C., Webster, Andrew R., Inglehearn, Chris F., van den Born, L. Ingeborgh, Koenekoop, Robert K., Michaelides, Michel, Ramesar, Raj S., Hoyng, Carel B., Mundlos, Stefan, Mhlanga, Musa M., Cremers, Frans P.M., Cheetham, Michael E., Roosing, Susanne, Hardcastle, Alison J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7675008/
https://www.ncbi.nlm.nih.gov/pubmed/33022222
http://dx.doi.org/10.1016/j.ajhg.2020.09.002
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author de Bruijn, Suzanne E.
Fiorentino, Alessia
Ottaviani, Daniele
Fanucchi, Stephanie
Melo, Uirá S.
Corral-Serrano, Julio C.
Mulders, Timo
Georgiou, Michalis
Rivolta, Carlo
Pontikos, Nikolas
Arno, Gavin
Roberts, Lisa
Greenberg, Jacquie
Albert, Silvia
Gilissen, Christian
Aben, Marco
Rebello, George
Mead, Simon
Raymond, F. Lucy
Corominas, Jordi
Smith, Claire E.L.
Kremer, Hannie
Downes, Susan
Black, Graeme C.
Webster, Andrew R.
Inglehearn, Chris F.
van den Born, L. Ingeborgh
Koenekoop, Robert K.
Michaelides, Michel
Ramesar, Raj S.
Hoyng, Carel B.
Mundlos, Stefan
Mhlanga, Musa M.
Cremers, Frans P.M.
Cheetham, Michael E.
Roosing, Susanne
Hardcastle, Alison J.
author_facet de Bruijn, Suzanne E.
Fiorentino, Alessia
Ottaviani, Daniele
Fanucchi, Stephanie
Melo, Uirá S.
Corral-Serrano, Julio C.
Mulders, Timo
Georgiou, Michalis
Rivolta, Carlo
Pontikos, Nikolas
Arno, Gavin
Roberts, Lisa
Greenberg, Jacquie
Albert, Silvia
Gilissen, Christian
Aben, Marco
Rebello, George
Mead, Simon
Raymond, F. Lucy
Corominas, Jordi
Smith, Claire E.L.
Kremer, Hannie
Downes, Susan
Black, Graeme C.
Webster, Andrew R.
Inglehearn, Chris F.
van den Born, L. Ingeborgh
Koenekoop, Robert K.
Michaelides, Michel
Ramesar, Raj S.
Hoyng, Carel B.
Mundlos, Stefan
Mhlanga, Musa M.
Cremers, Frans P.M.
Cheetham, Michael E.
Roosing, Susanne
Hardcastle, Alison J.
author_sort de Bruijn, Suzanne E.
collection PubMed
description The cause of autosomal-dominant retinitis pigmentosa (adRP), which leads to loss of vision and blindness, was investigated in families lacking a molecular diagnosis. A refined locus for adRP on Chr17q22 (RP17) was delineated through genotyping and genome sequencing, leading to the identification of structural variants (SVs) that segregate with disease. Eight different complex SVs were characterized in 22 adRP-affected families with >300 affected individuals. All RP17 SVs had breakpoints within a genomic region spanning YPEL2 to LINC01476. To investigate the mechanism of disease, we reprogrammed fibroblasts from affected individuals and controls into induced pluripotent stem cells (iPSCs) and differentiated them into photoreceptor precursor cells (PPCs) or retinal organoids (ROs). Hi-C was performed on ROs, and differential expression of regional genes and a retinal enhancer RNA at this locus was assessed by qPCR. The epigenetic landscape of the region, and Hi-C RO data, showed that YPEL2 sits within its own topologically associating domain (TAD), rich in enhancers with binding sites for retinal transcription factors. The Hi-C map of RP17 ROs revealed creation of a neo-TAD with ectopic contacts between GDPD1 and retinal enhancers, and modeling of all RP17 SVs was consistent with neo-TADs leading to ectopic retinal-specific enhancer-GDPD1 accessibility. qPCR confirmed increased expression of GDPD1 and increased expression of the retinal enhancer that enters the neo-TAD. Altered TAD structure resulting in increased retinal expression of GDPD1 is the likely convergent mechanism of disease, consistent with a dominant gain of function. Our study highlights the importance of SVs as a genomic mechanism in unsolved Mendelian diseases.
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spelling pubmed-76750082020-11-24 Structural Variants Create New Topological-Associated Domains and Ectopic Retinal Enhancer-Gene Contact in Dominant Retinitis Pigmentosa de Bruijn, Suzanne E. Fiorentino, Alessia Ottaviani, Daniele Fanucchi, Stephanie Melo, Uirá S. Corral-Serrano, Julio C. Mulders, Timo Georgiou, Michalis Rivolta, Carlo Pontikos, Nikolas Arno, Gavin Roberts, Lisa Greenberg, Jacquie Albert, Silvia Gilissen, Christian Aben, Marco Rebello, George Mead, Simon Raymond, F. Lucy Corominas, Jordi Smith, Claire E.L. Kremer, Hannie Downes, Susan Black, Graeme C. Webster, Andrew R. Inglehearn, Chris F. van den Born, L. Ingeborgh Koenekoop, Robert K. Michaelides, Michel Ramesar, Raj S. Hoyng, Carel B. Mundlos, Stefan Mhlanga, Musa M. Cremers, Frans P.M. Cheetham, Michael E. Roosing, Susanne Hardcastle, Alison J. Am J Hum Genet Article The cause of autosomal-dominant retinitis pigmentosa (adRP), which leads to loss of vision and blindness, was investigated in families lacking a molecular diagnosis. A refined locus for adRP on Chr17q22 (RP17) was delineated through genotyping and genome sequencing, leading to the identification of structural variants (SVs) that segregate with disease. Eight different complex SVs were characterized in 22 adRP-affected families with >300 affected individuals. All RP17 SVs had breakpoints within a genomic region spanning YPEL2 to LINC01476. To investigate the mechanism of disease, we reprogrammed fibroblasts from affected individuals and controls into induced pluripotent stem cells (iPSCs) and differentiated them into photoreceptor precursor cells (PPCs) or retinal organoids (ROs). Hi-C was performed on ROs, and differential expression of regional genes and a retinal enhancer RNA at this locus was assessed by qPCR. The epigenetic landscape of the region, and Hi-C RO data, showed that YPEL2 sits within its own topologically associating domain (TAD), rich in enhancers with binding sites for retinal transcription factors. The Hi-C map of RP17 ROs revealed creation of a neo-TAD with ectopic contacts between GDPD1 and retinal enhancers, and modeling of all RP17 SVs was consistent with neo-TADs leading to ectopic retinal-specific enhancer-GDPD1 accessibility. qPCR confirmed increased expression of GDPD1 and increased expression of the retinal enhancer that enters the neo-TAD. Altered TAD structure resulting in increased retinal expression of GDPD1 is the likely convergent mechanism of disease, consistent with a dominant gain of function. Our study highlights the importance of SVs as a genomic mechanism in unsolved Mendelian diseases. Elsevier 2020-11-05 2020-10-05 /pmc/articles/PMC7675008/ /pubmed/33022222 http://dx.doi.org/10.1016/j.ajhg.2020.09.002 Text en © 2020 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
de Bruijn, Suzanne E.
Fiorentino, Alessia
Ottaviani, Daniele
Fanucchi, Stephanie
Melo, Uirá S.
Corral-Serrano, Julio C.
Mulders, Timo
Georgiou, Michalis
Rivolta, Carlo
Pontikos, Nikolas
Arno, Gavin
Roberts, Lisa
Greenberg, Jacquie
Albert, Silvia
Gilissen, Christian
Aben, Marco
Rebello, George
Mead, Simon
Raymond, F. Lucy
Corominas, Jordi
Smith, Claire E.L.
Kremer, Hannie
Downes, Susan
Black, Graeme C.
Webster, Andrew R.
Inglehearn, Chris F.
van den Born, L. Ingeborgh
Koenekoop, Robert K.
Michaelides, Michel
Ramesar, Raj S.
Hoyng, Carel B.
Mundlos, Stefan
Mhlanga, Musa M.
Cremers, Frans P.M.
Cheetham, Michael E.
Roosing, Susanne
Hardcastle, Alison J.
Structural Variants Create New Topological-Associated Domains and Ectopic Retinal Enhancer-Gene Contact in Dominant Retinitis Pigmentosa
title Structural Variants Create New Topological-Associated Domains and Ectopic Retinal Enhancer-Gene Contact in Dominant Retinitis Pigmentosa
title_full Structural Variants Create New Topological-Associated Domains and Ectopic Retinal Enhancer-Gene Contact in Dominant Retinitis Pigmentosa
title_fullStr Structural Variants Create New Topological-Associated Domains and Ectopic Retinal Enhancer-Gene Contact in Dominant Retinitis Pigmentosa
title_full_unstemmed Structural Variants Create New Topological-Associated Domains and Ectopic Retinal Enhancer-Gene Contact in Dominant Retinitis Pigmentosa
title_short Structural Variants Create New Topological-Associated Domains and Ectopic Retinal Enhancer-Gene Contact in Dominant Retinitis Pigmentosa
title_sort structural variants create new topological-associated domains and ectopic retinal enhancer-gene contact in dominant retinitis pigmentosa
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7675008/
https://www.ncbi.nlm.nih.gov/pubmed/33022222
http://dx.doi.org/10.1016/j.ajhg.2020.09.002
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