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Novel pathogenic variants and quantitative phenotypic analyses of Robinow syndrome: WNT signaling perturbation and phenotypic variability

Robinow syndrome (RS) is a genetically heterogeneous disorder with six genes that converge on the WNT/planar cell polarity (PCP) signaling pathway implicated (DVL1, DVL3, FZD2, NXN, ROR2, and WNT5A). RS is characterized by skeletal dysplasia and distinctive facial and physical characteristics. To fu...

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Autores principales: Zhang, Chaofan, Jolly, Angad, Shayota, Brian J., Mazzeu, Juliana F., Du, Haowei, Dawood, Moez, Soper, Patricia Celestino, Ramalho de Lima, Ariadne, Ferreira, Bárbara Merfort, Coban-Akdemir, Zeynep, White, Janson, Shears, Deborah, Thomson, Fraser Robert, Douglas, Sarah Louise, Wainwright, Andrew, Bailey, Kathryn, Wordsworth, Paul, Oldridge, Mike, Lester, Tracy, Calder, Alistair D., Dumic, Katja, Banka, Siddharth, Donnai, Dian, Jhangiani, Shalini N., Potocki, Lorraine, Chung, Wendy K., Mora, Sara, Northrup, Hope, Ashfaq, Myla, Rosenfeld, Jill A., Mason, Kati, Pollack, Lynda C., McConkie-Rosell, Allyn, Kelly, Wei, McDonald, Marie, Hauser, Natalie S., Leahy, Peter, Powell, Cynthia M., Boy, Raquel, Honjo, Rachel Sayuri, Kok, Fernando, Martelli, Lucia R., Filho, Vicente Odone, Genomics England Research Consortium, Muzny, Donna M., Gibbs, Richard A., Posey, Jennifer E., Liu, Pengfei, Lupski, James R., Sutton, V. Reid, Carvalho, Claudia M.B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8756549/
https://www.ncbi.nlm.nih.gov/pubmed/35047859
http://dx.doi.org/10.1016/j.xhgg.2021.100074
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author Zhang, Chaofan
Jolly, Angad
Shayota, Brian J.
Mazzeu, Juliana F.
Du, Haowei
Dawood, Moez
Soper, Patricia Celestino
Ramalho de Lima, Ariadne
Ferreira, Bárbara Merfort
Coban-Akdemir, Zeynep
White, Janson
Shears, Deborah
Thomson, Fraser Robert
Douglas, Sarah Louise
Wainwright, Andrew
Bailey, Kathryn
Wordsworth, Paul
Oldridge, Mike
Lester, Tracy
Calder, Alistair D.
Dumic, Katja
Banka, Siddharth
Donnai, Dian
Jhangiani, Shalini N.
Potocki, Lorraine
Chung, Wendy K.
Mora, Sara
Northrup, Hope
Ashfaq, Myla
Rosenfeld, Jill A.
Mason, Kati
Pollack, Lynda C.
McConkie-Rosell, Allyn
Kelly, Wei
McDonald, Marie
Hauser, Natalie S.
Leahy, Peter
Powell, Cynthia M.
Boy, Raquel
Honjo, Rachel Sayuri
Kok, Fernando
Martelli, Lucia R.
Filho, Vicente Odone
Genomics England Research Consortium
Muzny, Donna M.
Gibbs, Richard A.
Posey, Jennifer E.
Liu, Pengfei
Lupski, James R.
Sutton, V. Reid
Carvalho, Claudia M.B.
author_facet Zhang, Chaofan
Jolly, Angad
Shayota, Brian J.
Mazzeu, Juliana F.
Du, Haowei
Dawood, Moez
Soper, Patricia Celestino
Ramalho de Lima, Ariadne
Ferreira, Bárbara Merfort
Coban-Akdemir, Zeynep
White, Janson
Shears, Deborah
Thomson, Fraser Robert
Douglas, Sarah Louise
Wainwright, Andrew
Bailey, Kathryn
Wordsworth, Paul
Oldridge, Mike
Lester, Tracy
Calder, Alistair D.
Dumic, Katja
Banka, Siddharth
Donnai, Dian
Jhangiani, Shalini N.
Potocki, Lorraine
Chung, Wendy K.
Mora, Sara
Northrup, Hope
Ashfaq, Myla
Rosenfeld, Jill A.
Mason, Kati
Pollack, Lynda C.
McConkie-Rosell, Allyn
Kelly, Wei
McDonald, Marie
Hauser, Natalie S.
Leahy, Peter
Powell, Cynthia M.
Boy, Raquel
Honjo, Rachel Sayuri
Kok, Fernando
Martelli, Lucia R.
Filho, Vicente Odone
Genomics England Research Consortium
Muzny, Donna M.
Gibbs, Richard A.
Posey, Jennifer E.
Liu, Pengfei
Lupski, James R.
Sutton, V. Reid
Carvalho, Claudia M.B.
author_sort Zhang, Chaofan
collection PubMed
description Robinow syndrome (RS) is a genetically heterogeneous disorder with six genes that converge on the WNT/planar cell polarity (PCP) signaling pathway implicated (DVL1, DVL3, FZD2, NXN, ROR2, and WNT5A). RS is characterized by skeletal dysplasia and distinctive facial and physical characteristics. To further explore the genetic heterogeneity, paralog contribution, and phenotypic variability of RS, we investigated a cohort of 22 individuals clinically diagnosed with RS from 18 unrelated families. Pathogenic or likely pathogenic variants in genes associated with RS or RS phenocopies were identified in all 22 individuals, including the first variant to be reported in DVL2. We retrospectively collected medical records of 16 individuals from this cohort and extracted clinical descriptions from 52 previously published cases. We performed Human Phenotype Ontology (HPO) based quantitative phenotypic analyses to dissect allele-specific phenotypic differences. Individuals with FZD2 variants clustered into two groups with demonstrable phenotypic differences between those with missense and truncating alleles. Probands with biallelic NXN variants clustered together with the majority of probands carrying DVL1, DVL2, and DVL3 variants, demonstrating no phenotypic distinction between the NXN-autosomal recessive and dominant forms of RS. While phenotypically similar diseases on the RS differential matched through HPO analysis, clustering using phenotype similarity score placed RS-associated phenotypes in a unique cluster containing WNT5A, FZD2, and ROR2 apart from non-RS-associated paralogs. Through human phenotype analyses of this RS cohort and OMIM clinical synopses of Mendelian disease, this study begins to tease apart specific biologic roles for non-canonical WNT-pathway proteins.
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spelling pubmed-87565492022-01-18 Novel pathogenic variants and quantitative phenotypic analyses of Robinow syndrome: WNT signaling perturbation and phenotypic variability Zhang, Chaofan Jolly, Angad Shayota, Brian J. Mazzeu, Juliana F. Du, Haowei Dawood, Moez Soper, Patricia Celestino Ramalho de Lima, Ariadne Ferreira, Bárbara Merfort Coban-Akdemir, Zeynep White, Janson Shears, Deborah Thomson, Fraser Robert Douglas, Sarah Louise Wainwright, Andrew Bailey, Kathryn Wordsworth, Paul Oldridge, Mike Lester, Tracy Calder, Alistair D. Dumic, Katja Banka, Siddharth Donnai, Dian Jhangiani, Shalini N. Potocki, Lorraine Chung, Wendy K. Mora, Sara Northrup, Hope Ashfaq, Myla Rosenfeld, Jill A. Mason, Kati Pollack, Lynda C. McConkie-Rosell, Allyn Kelly, Wei McDonald, Marie Hauser, Natalie S. Leahy, Peter Powell, Cynthia M. Boy, Raquel Honjo, Rachel Sayuri Kok, Fernando Martelli, Lucia R. Filho, Vicente Odone Genomics England Research Consortium Muzny, Donna M. Gibbs, Richard A. Posey, Jennifer E. Liu, Pengfei Lupski, James R. Sutton, V. Reid Carvalho, Claudia M.B. HGG Adv Article Robinow syndrome (RS) is a genetically heterogeneous disorder with six genes that converge on the WNT/planar cell polarity (PCP) signaling pathway implicated (DVL1, DVL3, FZD2, NXN, ROR2, and WNT5A). RS is characterized by skeletal dysplasia and distinctive facial and physical characteristics. To further explore the genetic heterogeneity, paralog contribution, and phenotypic variability of RS, we investigated a cohort of 22 individuals clinically diagnosed with RS from 18 unrelated families. Pathogenic or likely pathogenic variants in genes associated with RS or RS phenocopies were identified in all 22 individuals, including the first variant to be reported in DVL2. We retrospectively collected medical records of 16 individuals from this cohort and extracted clinical descriptions from 52 previously published cases. We performed Human Phenotype Ontology (HPO) based quantitative phenotypic analyses to dissect allele-specific phenotypic differences. Individuals with FZD2 variants clustered into two groups with demonstrable phenotypic differences between those with missense and truncating alleles. Probands with biallelic NXN variants clustered together with the majority of probands carrying DVL1, DVL2, and DVL3 variants, demonstrating no phenotypic distinction between the NXN-autosomal recessive and dominant forms of RS. While phenotypically similar diseases on the RS differential matched through HPO analysis, clustering using phenotype similarity score placed RS-associated phenotypes in a unique cluster containing WNT5A, FZD2, and ROR2 apart from non-RS-associated paralogs. Through human phenotype analyses of this RS cohort and OMIM clinical synopses of Mendelian disease, this study begins to tease apart specific biologic roles for non-canonical WNT-pathway proteins. Elsevier 2021-12-03 /pmc/articles/PMC8756549/ /pubmed/35047859 http://dx.doi.org/10.1016/j.xhgg.2021.100074 Text en © 2021 The Author(s) https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Zhang, Chaofan
Jolly, Angad
Shayota, Brian J.
Mazzeu, Juliana F.
Du, Haowei
Dawood, Moez
Soper, Patricia Celestino
Ramalho de Lima, Ariadne
Ferreira, Bárbara Merfort
Coban-Akdemir, Zeynep
White, Janson
Shears, Deborah
Thomson, Fraser Robert
Douglas, Sarah Louise
Wainwright, Andrew
Bailey, Kathryn
Wordsworth, Paul
Oldridge, Mike
Lester, Tracy
Calder, Alistair D.
Dumic, Katja
Banka, Siddharth
Donnai, Dian
Jhangiani, Shalini N.
Potocki, Lorraine
Chung, Wendy K.
Mora, Sara
Northrup, Hope
Ashfaq, Myla
Rosenfeld, Jill A.
Mason, Kati
Pollack, Lynda C.
McConkie-Rosell, Allyn
Kelly, Wei
McDonald, Marie
Hauser, Natalie S.
Leahy, Peter
Powell, Cynthia M.
Boy, Raquel
Honjo, Rachel Sayuri
Kok, Fernando
Martelli, Lucia R.
Filho, Vicente Odone
Genomics England Research Consortium
Muzny, Donna M.
Gibbs, Richard A.
Posey, Jennifer E.
Liu, Pengfei
Lupski, James R.
Sutton, V. Reid
Carvalho, Claudia M.B.
Novel pathogenic variants and quantitative phenotypic analyses of Robinow syndrome: WNT signaling perturbation and phenotypic variability
title Novel pathogenic variants and quantitative phenotypic analyses of Robinow syndrome: WNT signaling perturbation and phenotypic variability
title_full Novel pathogenic variants and quantitative phenotypic analyses of Robinow syndrome: WNT signaling perturbation and phenotypic variability
title_fullStr Novel pathogenic variants and quantitative phenotypic analyses of Robinow syndrome: WNT signaling perturbation and phenotypic variability
title_full_unstemmed Novel pathogenic variants and quantitative phenotypic analyses of Robinow syndrome: WNT signaling perturbation and phenotypic variability
title_short Novel pathogenic variants and quantitative phenotypic analyses of Robinow syndrome: WNT signaling perturbation and phenotypic variability
title_sort novel pathogenic variants and quantitative phenotypic analyses of robinow syndrome: wnt signaling perturbation and phenotypic variability
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8756549/
https://www.ncbi.nlm.nih.gov/pubmed/35047859
http://dx.doi.org/10.1016/j.xhgg.2021.100074
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