Cargando…

Endocytic recycling protein EHD1 regulates primary cilia morphogenesis and SHH signaling during neural tube development

Members of the four-member C-terminal EPS15-Homology Domain-containing (EHD) protein family play crucial roles in endocytic recycling of cell surface receptors from endosomes to the plasma membrane. In this study, we show that Ehd1 gene knockout in mice on a predominantly B6 background is embryonic...

Descripción completa

Detalles Bibliográficos
Autores principales: Bhattacharyya, Sohinee, Rainey, Mark A, Arya, Priyanka, Dutta, Samikshan, George, Manju, Storck, Matthew D., McComb, Rodney D., Muirhead, David, Todd, Gordon L., Gould, Karen, Datta, Kaustubh, Waes, Janee Gelineau-van, Band, Vimla, Band, Hamid
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4756679/
https://www.ncbi.nlm.nih.gov/pubmed/26884322
http://dx.doi.org/10.1038/srep20727
_version_ 1782416373746499584
author Bhattacharyya, Sohinee
Rainey, Mark A
Arya, Priyanka
Dutta, Samikshan
George, Manju
Storck, Matthew D.
McComb, Rodney D.
Muirhead, David
Todd, Gordon L.
Gould, Karen
Datta, Kaustubh
Waes, Janee Gelineau-van
Band, Vimla
Band, Hamid
author_facet Bhattacharyya, Sohinee
Rainey, Mark A
Arya, Priyanka
Dutta, Samikshan
George, Manju
Storck, Matthew D.
McComb, Rodney D.
Muirhead, David
Todd, Gordon L.
Gould, Karen
Datta, Kaustubh
Waes, Janee Gelineau-van
Band, Vimla
Band, Hamid
author_sort Bhattacharyya, Sohinee
collection PubMed
description Members of the four-member C-terminal EPS15-Homology Domain-containing (EHD) protein family play crucial roles in endocytic recycling of cell surface receptors from endosomes to the plasma membrane. In this study, we show that Ehd1 gene knockout in mice on a predominantly B6 background is embryonic lethal. Ehd1-null embryos die at mid-gestation with a failure to complete key developmental processes including neural tube closure, axial turning and patterning of the neural tube. We found that Ehd1-null embryos display short and stubby cilia on the developing neuroepithelium at embryonic day 9.5 (E9.5). Loss of EHD1 also deregulates the ciliary SHH signaling with Ehd1-null embryos displaying features indicative of increased SHH signaling, including a significant downregulation in the formation of the GLI3 repressor and increase in the ventral neuronal markers specified by SHH. Using Ehd1-null MEFS we found that EHD1 protein co-localizes with the SHH receptor Smoothened in the primary cilia upon ligand stimulation. Under the same conditions, EHD1 was shown to co-traffic with Smoothened into the developing primary cilia and we identify EHD1 as a direct binding partner of Smoothened. Overall, our studies identify the endocytic recycling regulator EHD1 as a novel regulator of the primary cilium-associated trafficking of Smoothened and Hedgehog signaling.
format Online
Article
Text
id pubmed-4756679
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher Nature Publishing Group
record_format MEDLINE/PubMed
spelling pubmed-47566792016-02-25 Endocytic recycling protein EHD1 regulates primary cilia morphogenesis and SHH signaling during neural tube development Bhattacharyya, Sohinee Rainey, Mark A Arya, Priyanka Dutta, Samikshan George, Manju Storck, Matthew D. McComb, Rodney D. Muirhead, David Todd, Gordon L. Gould, Karen Datta, Kaustubh Waes, Janee Gelineau-van Band, Vimla Band, Hamid Sci Rep Article Members of the four-member C-terminal EPS15-Homology Domain-containing (EHD) protein family play crucial roles in endocytic recycling of cell surface receptors from endosomes to the plasma membrane. In this study, we show that Ehd1 gene knockout in mice on a predominantly B6 background is embryonic lethal. Ehd1-null embryos die at mid-gestation with a failure to complete key developmental processes including neural tube closure, axial turning and patterning of the neural tube. We found that Ehd1-null embryos display short and stubby cilia on the developing neuroepithelium at embryonic day 9.5 (E9.5). Loss of EHD1 also deregulates the ciliary SHH signaling with Ehd1-null embryos displaying features indicative of increased SHH signaling, including a significant downregulation in the formation of the GLI3 repressor and increase in the ventral neuronal markers specified by SHH. Using Ehd1-null MEFS we found that EHD1 protein co-localizes with the SHH receptor Smoothened in the primary cilia upon ligand stimulation. Under the same conditions, EHD1 was shown to co-traffic with Smoothened into the developing primary cilia and we identify EHD1 as a direct binding partner of Smoothened. Overall, our studies identify the endocytic recycling regulator EHD1 as a novel regulator of the primary cilium-associated trafficking of Smoothened and Hedgehog signaling. Nature Publishing Group 2016-02-17 /pmc/articles/PMC4756679/ /pubmed/26884322 http://dx.doi.org/10.1038/srep20727 Text en Copyright © 2016, Macmillan Publishers Limited http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Bhattacharyya, Sohinee
Rainey, Mark A
Arya, Priyanka
Dutta, Samikshan
George, Manju
Storck, Matthew D.
McComb, Rodney D.
Muirhead, David
Todd, Gordon L.
Gould, Karen
Datta, Kaustubh
Waes, Janee Gelineau-van
Band, Vimla
Band, Hamid
Endocytic recycling protein EHD1 regulates primary cilia morphogenesis and SHH signaling during neural tube development
title Endocytic recycling protein EHD1 regulates primary cilia morphogenesis and SHH signaling during neural tube development
title_full Endocytic recycling protein EHD1 regulates primary cilia morphogenesis and SHH signaling during neural tube development
title_fullStr Endocytic recycling protein EHD1 regulates primary cilia morphogenesis and SHH signaling during neural tube development
title_full_unstemmed Endocytic recycling protein EHD1 regulates primary cilia morphogenesis and SHH signaling during neural tube development
title_short Endocytic recycling protein EHD1 regulates primary cilia morphogenesis and SHH signaling during neural tube development
title_sort endocytic recycling protein ehd1 regulates primary cilia morphogenesis and shh signaling during neural tube development
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4756679/
https://www.ncbi.nlm.nih.gov/pubmed/26884322
http://dx.doi.org/10.1038/srep20727
work_keys_str_mv AT bhattacharyyasohinee endocyticrecyclingproteinehd1regulatesprimaryciliamorphogenesisandshhsignalingduringneuraltubedevelopment
AT raineymarka endocyticrecyclingproteinehd1regulatesprimaryciliamorphogenesisandshhsignalingduringneuraltubedevelopment
AT aryapriyanka endocyticrecyclingproteinehd1regulatesprimaryciliamorphogenesisandshhsignalingduringneuraltubedevelopment
AT duttasamikshan endocyticrecyclingproteinehd1regulatesprimaryciliamorphogenesisandshhsignalingduringneuraltubedevelopment
AT georgemanju endocyticrecyclingproteinehd1regulatesprimaryciliamorphogenesisandshhsignalingduringneuraltubedevelopment
AT storckmatthewd endocyticrecyclingproteinehd1regulatesprimaryciliamorphogenesisandshhsignalingduringneuraltubedevelopment
AT mccombrodneyd endocyticrecyclingproteinehd1regulatesprimaryciliamorphogenesisandshhsignalingduringneuraltubedevelopment
AT muirheaddavid endocyticrecyclingproteinehd1regulatesprimaryciliamorphogenesisandshhsignalingduringneuraltubedevelopment
AT toddgordonl endocyticrecyclingproteinehd1regulatesprimaryciliamorphogenesisandshhsignalingduringneuraltubedevelopment
AT gouldkaren endocyticrecyclingproteinehd1regulatesprimaryciliamorphogenesisandshhsignalingduringneuraltubedevelopment
AT dattakaustubh endocyticrecyclingproteinehd1regulatesprimaryciliamorphogenesisandshhsignalingduringneuraltubedevelopment
AT waesjaneegelineauvan endocyticrecyclingproteinehd1regulatesprimaryciliamorphogenesisandshhsignalingduringneuraltubedevelopment
AT bandvimla endocyticrecyclingproteinehd1regulatesprimaryciliamorphogenesisandshhsignalingduringneuraltubedevelopment
AT bandhamid endocyticrecyclingproteinehd1regulatesprimaryciliamorphogenesisandshhsignalingduringneuraltubedevelopment