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Progressive liver, kidney, and heart degeneration in children and adults affected by TULP3 mutations
Organ fibrosis is a shared endpoint of many diseases, yet underlying mechanisms are not well understood. Several pathways governed by the primary cilium, a sensory antenna present on most vertebrate cells, have been linked with fibrosis. Ciliopathies usually start early in life and represent a consi...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Elsevier
2022
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9118107/ https://www.ncbi.nlm.nih.gov/pubmed/35397207 http://dx.doi.org/10.1016/j.ajhg.2022.03.015 |
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author | Devane, John Ott, Elisabeth Olinger, Eric G. Epting, Daniel Decker, Eva Friedrich, Anja Bachmann, Nadine Renschler, Gina Eisenberger, Tobias Briem-Richter, Andrea Grabhorn, Enke Freya Powell, Laura Wilson, Ian J. Rice, Sarah J. Miles, Colin G. Wood, Katrina Trivedi, Palak Hirschfield, Gideon Pietrobattista, Andrea Wohler, Elizabeth Mezina, Anya Sobreira, Nara Agolini, Emanuele Maggiore, Giuseppe Dahmer-Heath, Mareike Yilmaz, Ali Boerries, Melanie Metzger, Patrick Schell, Christoph Grünewald, Inga Konrad, Martin König, Jens Schlevogt, Bernhard Sayer, John A. Bergmann, Carsten |
author_facet | Devane, John Ott, Elisabeth Olinger, Eric G. Epting, Daniel Decker, Eva Friedrich, Anja Bachmann, Nadine Renschler, Gina Eisenberger, Tobias Briem-Richter, Andrea Grabhorn, Enke Freya Powell, Laura Wilson, Ian J. Rice, Sarah J. Miles, Colin G. Wood, Katrina Trivedi, Palak Hirschfield, Gideon Pietrobattista, Andrea Wohler, Elizabeth Mezina, Anya Sobreira, Nara Agolini, Emanuele Maggiore, Giuseppe Dahmer-Heath, Mareike Yilmaz, Ali Boerries, Melanie Metzger, Patrick Schell, Christoph Grünewald, Inga Konrad, Martin König, Jens Schlevogt, Bernhard Sayer, John A. Bergmann, Carsten |
author_sort | Devane, John |
collection | PubMed |
description | Organ fibrosis is a shared endpoint of many diseases, yet underlying mechanisms are not well understood. Several pathways governed by the primary cilium, a sensory antenna present on most vertebrate cells, have been linked with fibrosis. Ciliopathies usually start early in life and represent a considerable disease burden. We performed massively parallel sequencing by using cohorts of genetically unsolved individuals with unexplained liver and kidney failure and correlated this with clinical, imaging, and histopathological analyses. Mechanistic studies were conducted with a vertebrate model and primary cells. We detected bi-allelic deleterious variants in TULP3, encoding a critical adaptor protein for ciliary trafficking, in a total of 15 mostly adult individuals, originating from eight unrelated families, with progressive degenerative liver fibrosis, fibrocystic kidney disease, and hypertrophic cardiomyopathy with atypical fibrotic patterns on histopathology. We recapitulated the human phenotype in adult zebrafish and confirmed disruption of critical ciliary cargo composition in several primary cell lines derived from affected individuals. Further, we show interaction between TULP3 and the nuclear deacetylase SIRT1, with roles in DNA damage repair and fibrosis, and report increased DNA damage ex vivo. Transcriptomic studies demonstrated upregulation of profibrotic pathways with gene clusters for hypertrophic cardiomyopathy and WNT and TGF-β signaling. These findings identify variants in TULP3 as a monogenic cause for progressive degenerative disease of major organs in which affected individuals benefit from early detection and improved clinical management. Elucidation of mechanisms crucial for DNA damage repair and tissue maintenance will guide novel therapeutic avenues for this and similar genetic and non-genomic diseases. |
format | Online Article Text |
id | pubmed-9118107 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2022 |
publisher | Elsevier |
record_format | MEDLINE/PubMed |
spelling | pubmed-91181072022-05-20 Progressive liver, kidney, and heart degeneration in children and adults affected by TULP3 mutations Devane, John Ott, Elisabeth Olinger, Eric G. Epting, Daniel Decker, Eva Friedrich, Anja Bachmann, Nadine Renschler, Gina Eisenberger, Tobias Briem-Richter, Andrea Grabhorn, Enke Freya Powell, Laura Wilson, Ian J. Rice, Sarah J. Miles, Colin G. Wood, Katrina Trivedi, Palak Hirschfield, Gideon Pietrobattista, Andrea Wohler, Elizabeth Mezina, Anya Sobreira, Nara Agolini, Emanuele Maggiore, Giuseppe Dahmer-Heath, Mareike Yilmaz, Ali Boerries, Melanie Metzger, Patrick Schell, Christoph Grünewald, Inga Konrad, Martin König, Jens Schlevogt, Bernhard Sayer, John A. Bergmann, Carsten Am J Hum Genet Article Organ fibrosis is a shared endpoint of many diseases, yet underlying mechanisms are not well understood. Several pathways governed by the primary cilium, a sensory antenna present on most vertebrate cells, have been linked with fibrosis. Ciliopathies usually start early in life and represent a considerable disease burden. We performed massively parallel sequencing by using cohorts of genetically unsolved individuals with unexplained liver and kidney failure and correlated this with clinical, imaging, and histopathological analyses. Mechanistic studies were conducted with a vertebrate model and primary cells. We detected bi-allelic deleterious variants in TULP3, encoding a critical adaptor protein for ciliary trafficking, in a total of 15 mostly adult individuals, originating from eight unrelated families, with progressive degenerative liver fibrosis, fibrocystic kidney disease, and hypertrophic cardiomyopathy with atypical fibrotic patterns on histopathology. We recapitulated the human phenotype in adult zebrafish and confirmed disruption of critical ciliary cargo composition in several primary cell lines derived from affected individuals. Further, we show interaction between TULP3 and the nuclear deacetylase SIRT1, with roles in DNA damage repair and fibrosis, and report increased DNA damage ex vivo. Transcriptomic studies demonstrated upregulation of profibrotic pathways with gene clusters for hypertrophic cardiomyopathy and WNT and TGF-β signaling. These findings identify variants in TULP3 as a monogenic cause for progressive degenerative disease of major organs in which affected individuals benefit from early detection and improved clinical management. Elucidation of mechanisms crucial for DNA damage repair and tissue maintenance will guide novel therapeutic avenues for this and similar genetic and non-genomic diseases. Elsevier 2022-05-05 2022-04-08 /pmc/articles/PMC9118107/ /pubmed/35397207 http://dx.doi.org/10.1016/j.ajhg.2022.03.015 Text en © 2022 The Author(s) https://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 Devane, John Ott, Elisabeth Olinger, Eric G. Epting, Daniel Decker, Eva Friedrich, Anja Bachmann, Nadine Renschler, Gina Eisenberger, Tobias Briem-Richter, Andrea Grabhorn, Enke Freya Powell, Laura Wilson, Ian J. Rice, Sarah J. Miles, Colin G. Wood, Katrina Trivedi, Palak Hirschfield, Gideon Pietrobattista, Andrea Wohler, Elizabeth Mezina, Anya Sobreira, Nara Agolini, Emanuele Maggiore, Giuseppe Dahmer-Heath, Mareike Yilmaz, Ali Boerries, Melanie Metzger, Patrick Schell, Christoph Grünewald, Inga Konrad, Martin König, Jens Schlevogt, Bernhard Sayer, John A. Bergmann, Carsten Progressive liver, kidney, and heart degeneration in children and adults affected by TULP3 mutations |
title | Progressive liver, kidney, and heart degeneration in children and adults affected by TULP3 mutations |
title_full | Progressive liver, kidney, and heart degeneration in children and adults affected by TULP3 mutations |
title_fullStr | Progressive liver, kidney, and heart degeneration in children and adults affected by TULP3 mutations |
title_full_unstemmed | Progressive liver, kidney, and heart degeneration in children and adults affected by TULP3 mutations |
title_short | Progressive liver, kidney, and heart degeneration in children and adults affected by TULP3 mutations |
title_sort | progressive liver, kidney, and heart degeneration in children and adults affected by tulp3 mutations |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9118107/ https://www.ncbi.nlm.nih.gov/pubmed/35397207 http://dx.doi.org/10.1016/j.ajhg.2022.03.015 |
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