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ATMIN is a transcriptional regulator of both lung morphogenesis and ciliogenesis
Initially identified in DNA damage repair, ATM-interactor (ATMIN) further functions as a transcriptional regulator of lung morphogenesis. Here we analyse three mouse mutants, Atmin(gpg6/gpg6), Atmin(H210Q/H210Q) and Dynll1(GT/GT), revealing how ATMIN and its transcriptional target dynein light chain...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
The Company of Biologists
2014
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4197704/ https://www.ncbi.nlm.nih.gov/pubmed/25294941 http://dx.doi.org/10.1242/dev.107755 |
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author | Goggolidou, Paraskevi L. Stevens, Jonathan Agueci, Francesco Keynton, Jennifer Wheway, Gabrielle Grimes, Daniel T. Patel, Saloni H. Hilton, Helen Morthorst, Stine K. DiPaolo, Antonella Williams, Debbie J. Sanderson, Jeremy Khoronenkova, Svetlana V. Powles-Glover, Nicola Ermakov, Alexander Esapa, Chris T. Romero, Rosario Dianov, Grigory L. Briscoe, James Johnson, Colin A. Pedersen, Lotte B. Norris, Dominic P. |
author_facet | Goggolidou, Paraskevi L. Stevens, Jonathan Agueci, Francesco Keynton, Jennifer Wheway, Gabrielle Grimes, Daniel T. Patel, Saloni H. Hilton, Helen Morthorst, Stine K. DiPaolo, Antonella Williams, Debbie J. Sanderson, Jeremy Khoronenkova, Svetlana V. Powles-Glover, Nicola Ermakov, Alexander Esapa, Chris T. Romero, Rosario Dianov, Grigory L. Briscoe, James Johnson, Colin A. Pedersen, Lotte B. Norris, Dominic P. |
author_sort | Goggolidou, Paraskevi |
collection | PubMed |
description | Initially identified in DNA damage repair, ATM-interactor (ATMIN) further functions as a transcriptional regulator of lung morphogenesis. Here we analyse three mouse mutants, Atmin(gpg6/gpg6), Atmin(H210Q/H210Q) and Dynll1(GT/GT), revealing how ATMIN and its transcriptional target dynein light chain LC8-type 1 (DYNLL1) are required for normal lung morphogenesis and ciliogenesis. Expression screening of ciliogenic genes confirmed Dynll1 to be controlled by ATMIN and further revealed moderately altered expression of known intraflagellar transport (IFT) protein-encoding loci in Atmin mutant embryos. Significantly, Dynll1(GT/GT) embryonic cilia exhibited shortening and bulging, highly similar to the characterised retrograde IFT phenotype of Dync2h1. Depletion of ATMIN or DYNLL1 in cultured cells recapitulated the in vivo ciliogenesis phenotypes and expression of DYNLL1 or the related DYNLL2 rescued the effects of loss of ATMIN, demonstrating that ATMIN primarily promotes ciliogenesis by regulating Dynll1 expression. Furthermore, DYNLL1 as well as DYNLL2 localised to cilia in puncta, consistent with IFT particles, and physically interacted with WDR34, a mammalian homologue of the Chlamydomonas cytoplasmic dynein 2 intermediate chain that also localised to the cilium. This study extends the established Atmin-Dynll1 relationship into a developmental and a ciliary context, uncovering a novel series of interactions between DYNLL1, WDR34 and ATMIN. This identifies potential novel components of cytoplasmic dynein 2 and furthermore provides fresh insights into the molecular pathogenesis of human skeletal ciliopathies. |
format | Online Article Text |
id | pubmed-4197704 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2014 |
publisher | The Company of Biologists |
record_format | MEDLINE/PubMed |
spelling | pubmed-41977042014-11-07 ATMIN is a transcriptional regulator of both lung morphogenesis and ciliogenesis Goggolidou, Paraskevi L. Stevens, Jonathan Agueci, Francesco Keynton, Jennifer Wheway, Gabrielle Grimes, Daniel T. Patel, Saloni H. Hilton, Helen Morthorst, Stine K. DiPaolo, Antonella Williams, Debbie J. Sanderson, Jeremy Khoronenkova, Svetlana V. Powles-Glover, Nicola Ermakov, Alexander Esapa, Chris T. Romero, Rosario Dianov, Grigory L. Briscoe, James Johnson, Colin A. Pedersen, Lotte B. Norris, Dominic P. Development Research Articles Initially identified in DNA damage repair, ATM-interactor (ATMIN) further functions as a transcriptional regulator of lung morphogenesis. Here we analyse three mouse mutants, Atmin(gpg6/gpg6), Atmin(H210Q/H210Q) and Dynll1(GT/GT), revealing how ATMIN and its transcriptional target dynein light chain LC8-type 1 (DYNLL1) are required for normal lung morphogenesis and ciliogenesis. Expression screening of ciliogenic genes confirmed Dynll1 to be controlled by ATMIN and further revealed moderately altered expression of known intraflagellar transport (IFT) protein-encoding loci in Atmin mutant embryos. Significantly, Dynll1(GT/GT) embryonic cilia exhibited shortening and bulging, highly similar to the characterised retrograde IFT phenotype of Dync2h1. Depletion of ATMIN or DYNLL1 in cultured cells recapitulated the in vivo ciliogenesis phenotypes and expression of DYNLL1 or the related DYNLL2 rescued the effects of loss of ATMIN, demonstrating that ATMIN primarily promotes ciliogenesis by regulating Dynll1 expression. Furthermore, DYNLL1 as well as DYNLL2 localised to cilia in puncta, consistent with IFT particles, and physically interacted with WDR34, a mammalian homologue of the Chlamydomonas cytoplasmic dynein 2 intermediate chain that also localised to the cilium. This study extends the established Atmin-Dynll1 relationship into a developmental and a ciliary context, uncovering a novel series of interactions between DYNLL1, WDR34 and ATMIN. This identifies potential novel components of cytoplasmic dynein 2 and furthermore provides fresh insights into the molecular pathogenesis of human skeletal ciliopathies. The Company of Biologists 2014-10 /pmc/articles/PMC4197704/ /pubmed/25294941 http://dx.doi.org/10.1242/dev.107755 Text en © 2014. Published by The Company of Biologists Ltd http://creativecommons.org/licenses/by/3.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0), which permits unrestricted use, distribution and reproduction in any medium provided that the original work is properly attributed. |
spellingShingle | Research Articles Goggolidou, Paraskevi L. Stevens, Jonathan Agueci, Francesco Keynton, Jennifer Wheway, Gabrielle Grimes, Daniel T. Patel, Saloni H. Hilton, Helen Morthorst, Stine K. DiPaolo, Antonella Williams, Debbie J. Sanderson, Jeremy Khoronenkova, Svetlana V. Powles-Glover, Nicola Ermakov, Alexander Esapa, Chris T. Romero, Rosario Dianov, Grigory L. Briscoe, James Johnson, Colin A. Pedersen, Lotte B. Norris, Dominic P. ATMIN is a transcriptional regulator of both lung morphogenesis and ciliogenesis |
title | ATMIN is a transcriptional regulator of both lung morphogenesis and ciliogenesis |
title_full | ATMIN is a transcriptional regulator of both lung morphogenesis and ciliogenesis |
title_fullStr | ATMIN is a transcriptional regulator of both lung morphogenesis and ciliogenesis |
title_full_unstemmed | ATMIN is a transcriptional regulator of both lung morphogenesis and ciliogenesis |
title_short | ATMIN is a transcriptional regulator of both lung morphogenesis and ciliogenesis |
title_sort | atmin is a transcriptional regulator of both lung morphogenesis and ciliogenesis |
topic | Research Articles |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4197704/ https://www.ncbi.nlm.nih.gov/pubmed/25294941 http://dx.doi.org/10.1242/dev.107755 |
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