Cargando…
The Mammalian Orthologs of Drosophila Lgd, CC2D1A and CC2D1B, Function in the Endocytic Pathway, but Their Individual Loss of Function Does Not Affect Notch Signalling
CC2D1A and CC2D1B belong to the evolutionary conserved Lgd protein family with members in all multi-cellular animals. Several functions such as centrosomal cleavage, involvement in signalling pathways, immune response and synapse maturation have been described for CC2D1A. Moreover, the Drosophila me...
Autores principales: | , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Public Library of Science
2015
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4697852/ https://www.ncbi.nlm.nih.gov/pubmed/26720614 http://dx.doi.org/10.1371/journal.pgen.1005749 |
_version_ | 1782407994046152704 |
---|---|
author | Drusenheimer, Nadja Migdal, Bernhard Jäckel, Sandra Tveriakhina, Lena Scheider, Kristina Schulz, Katharina Gröper, Jieny Köhrer, Karl Klein, Thomas |
author_facet | Drusenheimer, Nadja Migdal, Bernhard Jäckel, Sandra Tveriakhina, Lena Scheider, Kristina Schulz, Katharina Gröper, Jieny Köhrer, Karl Klein, Thomas |
author_sort | Drusenheimer, Nadja |
collection | PubMed |
description | CC2D1A and CC2D1B belong to the evolutionary conserved Lgd protein family with members in all multi-cellular animals. Several functions such as centrosomal cleavage, involvement in signalling pathways, immune response and synapse maturation have been described for CC2D1A. Moreover, the Drosophila melanogaster ortholog Lgd was shown to be involved in the endosomal trafficking of the Notch receptor and other transmembrane receptors and physically interacts with the ESCRT-III component Shrub/CHMP4. To determine if this function is conserved in mammals we generated and characterized Cc2d1a and Cc2d1b conditional knockout mice. While Cc2d1b deficient mice displayed no obvious phenotype, we found that Cc2d1a deficient mice as well as conditional mutants that lack CC2D1A only in the nervous system die shortly after birth due to respiratory distress. This finding confirms the suspicion that the breathing defect is caused by the central nervous system. However, an involvement in centrosomal function could not be confirmed in Cc2d1a deficient MEF cells. To analyse an influence on Notch signalling, we generated intestine specific Cc2d1a mutant mice. These mice did not display any alterations in goblet cell number, proliferating cell number or expression of the Notch reporter Hes1-emGFP, suggesting that CC2D1A is not required for Notch signalling. However, our EM analysis revealed that the average size of endosomes of Cc2d1a mutant cells, but not Cc2d1b mutant cells, is increased, indicating a defect in endosomal morphogenesis. We could show that CC2D1A and its interaction partner CHMP4B are localised on endosomes in MEF cells, when the activity of the endosomal protein VPS4 is reduced. This indicates that CC2D1A cycles between the cytosol and the endosomal membrane. Additionally, in rescue experiments in D. melanogaster, CC2D1A and CC2D1B were able to functionally replace Lgd. Altogether our data suggest a functional conservation of the Lgd protein family in the ESCRT-III mediated process in metazoans. |
format | Online Article Text |
id | pubmed-4697852 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2015 |
publisher | Public Library of Science |
record_format | MEDLINE/PubMed |
spelling | pubmed-46978522016-01-13 The Mammalian Orthologs of Drosophila Lgd, CC2D1A and CC2D1B, Function in the Endocytic Pathway, but Their Individual Loss of Function Does Not Affect Notch Signalling Drusenheimer, Nadja Migdal, Bernhard Jäckel, Sandra Tveriakhina, Lena Scheider, Kristina Schulz, Katharina Gröper, Jieny Köhrer, Karl Klein, Thomas PLoS Genet Research Article CC2D1A and CC2D1B belong to the evolutionary conserved Lgd protein family with members in all multi-cellular animals. Several functions such as centrosomal cleavage, involvement in signalling pathways, immune response and synapse maturation have been described for CC2D1A. Moreover, the Drosophila melanogaster ortholog Lgd was shown to be involved in the endosomal trafficking of the Notch receptor and other transmembrane receptors and physically interacts with the ESCRT-III component Shrub/CHMP4. To determine if this function is conserved in mammals we generated and characterized Cc2d1a and Cc2d1b conditional knockout mice. While Cc2d1b deficient mice displayed no obvious phenotype, we found that Cc2d1a deficient mice as well as conditional mutants that lack CC2D1A only in the nervous system die shortly after birth due to respiratory distress. This finding confirms the suspicion that the breathing defect is caused by the central nervous system. However, an involvement in centrosomal function could not be confirmed in Cc2d1a deficient MEF cells. To analyse an influence on Notch signalling, we generated intestine specific Cc2d1a mutant mice. These mice did not display any alterations in goblet cell number, proliferating cell number or expression of the Notch reporter Hes1-emGFP, suggesting that CC2D1A is not required for Notch signalling. However, our EM analysis revealed that the average size of endosomes of Cc2d1a mutant cells, but not Cc2d1b mutant cells, is increased, indicating a defect in endosomal morphogenesis. We could show that CC2D1A and its interaction partner CHMP4B are localised on endosomes in MEF cells, when the activity of the endosomal protein VPS4 is reduced. This indicates that CC2D1A cycles between the cytosol and the endosomal membrane. Additionally, in rescue experiments in D. melanogaster, CC2D1A and CC2D1B were able to functionally replace Lgd. Altogether our data suggest a functional conservation of the Lgd protein family in the ESCRT-III mediated process in metazoans. Public Library of Science 2015-12-31 /pmc/articles/PMC4697852/ /pubmed/26720614 http://dx.doi.org/10.1371/journal.pgen.1005749 Text en © 2015 Drusenheimer et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited. |
spellingShingle | Research Article Drusenheimer, Nadja Migdal, Bernhard Jäckel, Sandra Tveriakhina, Lena Scheider, Kristina Schulz, Katharina Gröper, Jieny Köhrer, Karl Klein, Thomas The Mammalian Orthologs of Drosophila Lgd, CC2D1A and CC2D1B, Function in the Endocytic Pathway, but Their Individual Loss of Function Does Not Affect Notch Signalling |
title | The Mammalian Orthologs of Drosophila Lgd, CC2D1A and CC2D1B, Function in the Endocytic Pathway, but Their Individual Loss of Function Does Not Affect Notch Signalling |
title_full | The Mammalian Orthologs of Drosophila Lgd, CC2D1A and CC2D1B, Function in the Endocytic Pathway, but Their Individual Loss of Function Does Not Affect Notch Signalling |
title_fullStr | The Mammalian Orthologs of Drosophila Lgd, CC2D1A and CC2D1B, Function in the Endocytic Pathway, but Their Individual Loss of Function Does Not Affect Notch Signalling |
title_full_unstemmed | The Mammalian Orthologs of Drosophila Lgd, CC2D1A and CC2D1B, Function in the Endocytic Pathway, but Their Individual Loss of Function Does Not Affect Notch Signalling |
title_short | The Mammalian Orthologs of Drosophila Lgd, CC2D1A and CC2D1B, Function in the Endocytic Pathway, but Their Individual Loss of Function Does Not Affect Notch Signalling |
title_sort | mammalian orthologs of drosophila lgd, cc2d1a and cc2d1b, function in the endocytic pathway, but their individual loss of function does not affect notch signalling |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4697852/ https://www.ncbi.nlm.nih.gov/pubmed/26720614 http://dx.doi.org/10.1371/journal.pgen.1005749 |
work_keys_str_mv | AT drusenheimernadja themammalianorthologsofdrosophilalgdcc2d1aandcc2d1bfunctionintheendocyticpathwaybuttheirindividuallossoffunctiondoesnotaffectnotchsignalling AT migdalbernhard themammalianorthologsofdrosophilalgdcc2d1aandcc2d1bfunctionintheendocyticpathwaybuttheirindividuallossoffunctiondoesnotaffectnotchsignalling AT jackelsandra themammalianorthologsofdrosophilalgdcc2d1aandcc2d1bfunctionintheendocyticpathwaybuttheirindividuallossoffunctiondoesnotaffectnotchsignalling AT tveriakhinalena themammalianorthologsofdrosophilalgdcc2d1aandcc2d1bfunctionintheendocyticpathwaybuttheirindividuallossoffunctiondoesnotaffectnotchsignalling AT scheiderkristina themammalianorthologsofdrosophilalgdcc2d1aandcc2d1bfunctionintheendocyticpathwaybuttheirindividuallossoffunctiondoesnotaffectnotchsignalling AT schulzkatharina themammalianorthologsofdrosophilalgdcc2d1aandcc2d1bfunctionintheendocyticpathwaybuttheirindividuallossoffunctiondoesnotaffectnotchsignalling AT groperjieny themammalianorthologsofdrosophilalgdcc2d1aandcc2d1bfunctionintheendocyticpathwaybuttheirindividuallossoffunctiondoesnotaffectnotchsignalling AT kohrerkarl themammalianorthologsofdrosophilalgdcc2d1aandcc2d1bfunctionintheendocyticpathwaybuttheirindividuallossoffunctiondoesnotaffectnotchsignalling AT kleinthomas themammalianorthologsofdrosophilalgdcc2d1aandcc2d1bfunctionintheendocyticpathwaybuttheirindividuallossoffunctiondoesnotaffectnotchsignalling AT drusenheimernadja mammalianorthologsofdrosophilalgdcc2d1aandcc2d1bfunctionintheendocyticpathwaybuttheirindividuallossoffunctiondoesnotaffectnotchsignalling AT migdalbernhard mammalianorthologsofdrosophilalgdcc2d1aandcc2d1bfunctionintheendocyticpathwaybuttheirindividuallossoffunctiondoesnotaffectnotchsignalling AT jackelsandra mammalianorthologsofdrosophilalgdcc2d1aandcc2d1bfunctionintheendocyticpathwaybuttheirindividuallossoffunctiondoesnotaffectnotchsignalling AT tveriakhinalena mammalianorthologsofdrosophilalgdcc2d1aandcc2d1bfunctionintheendocyticpathwaybuttheirindividuallossoffunctiondoesnotaffectnotchsignalling AT scheiderkristina mammalianorthologsofdrosophilalgdcc2d1aandcc2d1bfunctionintheendocyticpathwaybuttheirindividuallossoffunctiondoesnotaffectnotchsignalling AT schulzkatharina mammalianorthologsofdrosophilalgdcc2d1aandcc2d1bfunctionintheendocyticpathwaybuttheirindividuallossoffunctiondoesnotaffectnotchsignalling AT groperjieny mammalianorthologsofdrosophilalgdcc2d1aandcc2d1bfunctionintheendocyticpathwaybuttheirindividuallossoffunctiondoesnotaffectnotchsignalling AT kohrerkarl mammalianorthologsofdrosophilalgdcc2d1aandcc2d1bfunctionintheendocyticpathwaybuttheirindividuallossoffunctiondoesnotaffectnotchsignalling AT kleinthomas mammalianorthologsofdrosophilalgdcc2d1aandcc2d1bfunctionintheendocyticpathwaybuttheirindividuallossoffunctiondoesnotaffectnotchsignalling |