Cargando…

Sequence variation in PPP1R13L results in a novel form of cardio‐cutaneous syndrome

Dilated cardiomyopathy (DCM) is a life‐threatening disorder whose genetic basis is heterogeneous and mostly unknown. Five Arab Christian infants, aged 4–30 months from four families, were diagnosed with DCM associated with mild skin, teeth, and hair abnormalities. All passed away before age 3. A hom...

Descripción completa

Detalles Bibliográficos
Autores principales: Falik‐Zaccai, Tzipora C, Barsheshet, Yiftah, Mandel, Hanna, Segev, Meital, Lorber, Avraham, Gelberg, Shachaf, Kalfon, Limor, Ben Haroush, Shani, Shalata, Adel, Gelernter‐Yaniv, Liat, Chaim, Sarah, Raviv Shay, Dorith, Khayat, Morad, Werbner, Michal, Levi, Inbar, Shoval, Yishay, Tal, Galit, Shalev, Stavit, Reuveni, Eli, Avitan‐Hersh, Emily, Vlodavsky, Eugene, Appl‐Sarid, Liat, Goldsher, Dorit, Bergman, Reuven, Segal, Zvi, Bitterman‐Deutsch, Ora, Avni, Orly
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5331242/
https://www.ncbi.nlm.nih.gov/pubmed/28069640
http://dx.doi.org/10.15252/emmm.201606523
_version_ 1782511334019039232
author Falik‐Zaccai, Tzipora C
Barsheshet, Yiftah
Mandel, Hanna
Segev, Meital
Lorber, Avraham
Gelberg, Shachaf
Kalfon, Limor
Ben Haroush, Shani
Shalata, Adel
Gelernter‐Yaniv, Liat
Chaim, Sarah
Raviv Shay, Dorith
Khayat, Morad
Werbner, Michal
Levi, Inbar
Shoval, Yishay
Tal, Galit
Shalev, Stavit
Reuveni, Eli
Avitan‐Hersh, Emily
Vlodavsky, Eugene
Appl‐Sarid, Liat
Goldsher, Dorit
Bergman, Reuven
Segal, Zvi
Bitterman‐Deutsch, Ora
Avni, Orly
author_facet Falik‐Zaccai, Tzipora C
Barsheshet, Yiftah
Mandel, Hanna
Segev, Meital
Lorber, Avraham
Gelberg, Shachaf
Kalfon, Limor
Ben Haroush, Shani
Shalata, Adel
Gelernter‐Yaniv, Liat
Chaim, Sarah
Raviv Shay, Dorith
Khayat, Morad
Werbner, Michal
Levi, Inbar
Shoval, Yishay
Tal, Galit
Shalev, Stavit
Reuveni, Eli
Avitan‐Hersh, Emily
Vlodavsky, Eugene
Appl‐Sarid, Liat
Goldsher, Dorit
Bergman, Reuven
Segal, Zvi
Bitterman‐Deutsch, Ora
Avni, Orly
author_sort Falik‐Zaccai, Tzipora C
collection PubMed
description Dilated cardiomyopathy (DCM) is a life‐threatening disorder whose genetic basis is heterogeneous and mostly unknown. Five Arab Christian infants, aged 4–30 months from four families, were diagnosed with DCM associated with mild skin, teeth, and hair abnormalities. All passed away before age 3. A homozygous sequence variation creating a premature stop codon at PPP1R13L encoding the iASPP protein was identified in three infants and in the mother of the other two. Patients’ fibroblasts and PPP1R13L‐knocked down human fibroblasts presented higher expression levels of pro‐inflammatory cytokine genes in response to lipopolysaccharide, as well as Ppp1r13l‐knocked down murine cardiomyocytes and hearts of Ppp1r13l‐deficient mice. The hypersensitivity to lipopolysaccharide was NF‐κB‐dependent, and its inducible binding activity to promoters of pro‐inflammatory cytokine genes was elevated in patients’ fibroblasts. RNA sequencing of Ppp1r13l‐knocked down murine cardiomyocytes and of hearts derived from different stages of DCM development in Ppp1r13l‐deficient mice revealed the crucial role of iASPP in dampening cardiac inflammatory response. Our results determined PPP1R13L as the gene underlying a novel autosomal‐recessive cardio‐cutaneous syndrome in humans and strongly suggest that the fatal DCM during infancy is a consequence of failure to regulate transcriptional pathways necessary for tuning cardiac threshold response to common inflammatory stressors.
format Online
Article
Text
id pubmed-5331242
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-53312422017-03-06 Sequence variation in PPP1R13L results in a novel form of cardio‐cutaneous syndrome Falik‐Zaccai, Tzipora C Barsheshet, Yiftah Mandel, Hanna Segev, Meital Lorber, Avraham Gelberg, Shachaf Kalfon, Limor Ben Haroush, Shani Shalata, Adel Gelernter‐Yaniv, Liat Chaim, Sarah Raviv Shay, Dorith Khayat, Morad Werbner, Michal Levi, Inbar Shoval, Yishay Tal, Galit Shalev, Stavit Reuveni, Eli Avitan‐Hersh, Emily Vlodavsky, Eugene Appl‐Sarid, Liat Goldsher, Dorit Bergman, Reuven Segal, Zvi Bitterman‐Deutsch, Ora Avni, Orly EMBO Mol Med Research Articles Dilated cardiomyopathy (DCM) is a life‐threatening disorder whose genetic basis is heterogeneous and mostly unknown. Five Arab Christian infants, aged 4–30 months from four families, were diagnosed with DCM associated with mild skin, teeth, and hair abnormalities. All passed away before age 3. A homozygous sequence variation creating a premature stop codon at PPP1R13L encoding the iASPP protein was identified in three infants and in the mother of the other two. Patients’ fibroblasts and PPP1R13L‐knocked down human fibroblasts presented higher expression levels of pro‐inflammatory cytokine genes in response to lipopolysaccharide, as well as Ppp1r13l‐knocked down murine cardiomyocytes and hearts of Ppp1r13l‐deficient mice. The hypersensitivity to lipopolysaccharide was NF‐κB‐dependent, and its inducible binding activity to promoters of pro‐inflammatory cytokine genes was elevated in patients’ fibroblasts. RNA sequencing of Ppp1r13l‐knocked down murine cardiomyocytes and of hearts derived from different stages of DCM development in Ppp1r13l‐deficient mice revealed the crucial role of iASPP in dampening cardiac inflammatory response. Our results determined PPP1R13L as the gene underlying a novel autosomal‐recessive cardio‐cutaneous syndrome in humans and strongly suggest that the fatal DCM during infancy is a consequence of failure to regulate transcriptional pathways necessary for tuning cardiac threshold response to common inflammatory stressors. John Wiley and Sons Inc. 2017-01-09 2017-03 /pmc/articles/PMC5331242/ /pubmed/28069640 http://dx.doi.org/10.15252/emmm.201606523 Text en © 2017 The Authors. Published under the terms of the CC BY 4.0 license This is an open access article under the terms of the Creative Commons Attribution 4.0 (http://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Falik‐Zaccai, Tzipora C
Barsheshet, Yiftah
Mandel, Hanna
Segev, Meital
Lorber, Avraham
Gelberg, Shachaf
Kalfon, Limor
Ben Haroush, Shani
Shalata, Adel
Gelernter‐Yaniv, Liat
Chaim, Sarah
Raviv Shay, Dorith
Khayat, Morad
Werbner, Michal
Levi, Inbar
Shoval, Yishay
Tal, Galit
Shalev, Stavit
Reuveni, Eli
Avitan‐Hersh, Emily
Vlodavsky, Eugene
Appl‐Sarid, Liat
Goldsher, Dorit
Bergman, Reuven
Segal, Zvi
Bitterman‐Deutsch, Ora
Avni, Orly
Sequence variation in PPP1R13L results in a novel form of cardio‐cutaneous syndrome
title Sequence variation in PPP1R13L results in a novel form of cardio‐cutaneous syndrome
title_full Sequence variation in PPP1R13L results in a novel form of cardio‐cutaneous syndrome
title_fullStr Sequence variation in PPP1R13L results in a novel form of cardio‐cutaneous syndrome
title_full_unstemmed Sequence variation in PPP1R13L results in a novel form of cardio‐cutaneous syndrome
title_short Sequence variation in PPP1R13L results in a novel form of cardio‐cutaneous syndrome
title_sort sequence variation in ppp1r13l results in a novel form of cardio‐cutaneous syndrome
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5331242/
https://www.ncbi.nlm.nih.gov/pubmed/28069640
http://dx.doi.org/10.15252/emmm.201606523
work_keys_str_mv AT falikzaccaitziporac sequencevariationinppp1r13lresultsinanovelformofcardiocutaneoussyndrome
AT barsheshetyiftah sequencevariationinppp1r13lresultsinanovelformofcardiocutaneoussyndrome
AT mandelhanna sequencevariationinppp1r13lresultsinanovelformofcardiocutaneoussyndrome
AT segevmeital sequencevariationinppp1r13lresultsinanovelformofcardiocutaneoussyndrome
AT lorberavraham sequencevariationinppp1r13lresultsinanovelformofcardiocutaneoussyndrome
AT gelbergshachaf sequencevariationinppp1r13lresultsinanovelformofcardiocutaneoussyndrome
AT kalfonlimor sequencevariationinppp1r13lresultsinanovelformofcardiocutaneoussyndrome
AT benharoushshani sequencevariationinppp1r13lresultsinanovelformofcardiocutaneoussyndrome
AT shalataadel sequencevariationinppp1r13lresultsinanovelformofcardiocutaneoussyndrome
AT gelernteryanivliat sequencevariationinppp1r13lresultsinanovelformofcardiocutaneoussyndrome
AT chaimsarah sequencevariationinppp1r13lresultsinanovelformofcardiocutaneoussyndrome
AT ravivshaydorith sequencevariationinppp1r13lresultsinanovelformofcardiocutaneoussyndrome
AT khayatmorad sequencevariationinppp1r13lresultsinanovelformofcardiocutaneoussyndrome
AT werbnermichal sequencevariationinppp1r13lresultsinanovelformofcardiocutaneoussyndrome
AT leviinbar sequencevariationinppp1r13lresultsinanovelformofcardiocutaneoussyndrome
AT shovalyishay sequencevariationinppp1r13lresultsinanovelformofcardiocutaneoussyndrome
AT talgalit sequencevariationinppp1r13lresultsinanovelformofcardiocutaneoussyndrome
AT shalevstavit sequencevariationinppp1r13lresultsinanovelformofcardiocutaneoussyndrome
AT reuvenieli sequencevariationinppp1r13lresultsinanovelformofcardiocutaneoussyndrome
AT avitanhershemily sequencevariationinppp1r13lresultsinanovelformofcardiocutaneoussyndrome
AT vlodavskyeugene sequencevariationinppp1r13lresultsinanovelformofcardiocutaneoussyndrome
AT applsaridliat sequencevariationinppp1r13lresultsinanovelformofcardiocutaneoussyndrome
AT goldsherdorit sequencevariationinppp1r13lresultsinanovelformofcardiocutaneoussyndrome
AT bergmanreuven sequencevariationinppp1r13lresultsinanovelformofcardiocutaneoussyndrome
AT segalzvi sequencevariationinppp1r13lresultsinanovelformofcardiocutaneoussyndrome
AT bittermandeutschora sequencevariationinppp1r13lresultsinanovelformofcardiocutaneoussyndrome
AT avniorly sequencevariationinppp1r13lresultsinanovelformofcardiocutaneoussyndrome