Wnt-PLC-IP3-Connexin-Ca2+ axis maintains ependymal motile cilia in zebrafish spinal cord
Ependymal cells are supporting cells in the central nervous system. Here the authors elucidate a signalling axis in zebrafish spinal cord ependymal cells that is important for motile cilia assembly and maintenance, demonstrating that it depends on intercellular propagation of calcium ions via connex...
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Nature Portfolio
2020
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oai:doaj.org-article:50b03acaa0d0416f90bb32ff426f7eea2021-12-02T16:50:04ZWnt-PLC-IP3-Connexin-Ca2+ axis maintains ependymal motile cilia in zebrafish spinal cord10.1038/s41467-020-15248-22041-1723https://doaj.org/article/50b03acaa0d0416f90bb32ff426f7eea2020-04-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-15248-2https://doaj.org/toc/2041-1723Ependymal cells are supporting cells in the central nervous system. Here the authors elucidate a signalling axis in zebrafish spinal cord ependymal cells that is important for motile cilia assembly and maintenance, demonstrating that it depends on intercellular propagation of calcium ions via connexin 43.Jun ZhangGopalakrishnan ChandrasekaranWenting LiDong-Young KimIn Young JeongSo-Hyun LeeTing LiangJin Young BaeIsaac ChoiHyuno KangJin-Soo MaengMyeong-Kyu KimTaewon LeeSeung Woo ParkMin Jung KimHyung-Seok KimHyunju RoYong Chul BaeHae-Chul ParkEun Young ChoiSeok-Yong ChoiNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-14 (2020) |
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Science Q Jun Zhang Gopalakrishnan Chandrasekaran Wenting Li Dong-Young Kim In Young Jeong So-Hyun Lee Ting Liang Jin Young Bae Isaac Choi Hyuno Kang Jin-Soo Maeng Myeong-Kyu Kim Taewon Lee Seung Woo Park Min Jung Kim Hyung-Seok Kim Hyunju Ro Yong Chul Bae Hae-Chul Park Eun Young Choi Seok-Yong Choi Wnt-PLC-IP3-Connexin-Ca2+ axis maintains ependymal motile cilia in zebrafish spinal cord |
description |
Ependymal cells are supporting cells in the central nervous system. Here the authors elucidate a signalling axis in zebrafish spinal cord ependymal cells that is important for motile cilia assembly and maintenance, demonstrating that it depends on intercellular propagation of calcium ions via connexin 43. |
format |
article |
author |
Jun Zhang Gopalakrishnan Chandrasekaran Wenting Li Dong-Young Kim In Young Jeong So-Hyun Lee Ting Liang Jin Young Bae Isaac Choi Hyuno Kang Jin-Soo Maeng Myeong-Kyu Kim Taewon Lee Seung Woo Park Min Jung Kim Hyung-Seok Kim Hyunju Ro Yong Chul Bae Hae-Chul Park Eun Young Choi Seok-Yong Choi |
author_facet |
Jun Zhang Gopalakrishnan Chandrasekaran Wenting Li Dong-Young Kim In Young Jeong So-Hyun Lee Ting Liang Jin Young Bae Isaac Choi Hyuno Kang Jin-Soo Maeng Myeong-Kyu Kim Taewon Lee Seung Woo Park Min Jung Kim Hyung-Seok Kim Hyunju Ro Yong Chul Bae Hae-Chul Park Eun Young Choi Seok-Yong Choi |
author_sort |
Jun Zhang |
title |
Wnt-PLC-IP3-Connexin-Ca2+ axis maintains ependymal motile cilia in zebrafish spinal cord |
title_short |
Wnt-PLC-IP3-Connexin-Ca2+ axis maintains ependymal motile cilia in zebrafish spinal cord |
title_full |
Wnt-PLC-IP3-Connexin-Ca2+ axis maintains ependymal motile cilia in zebrafish spinal cord |
title_fullStr |
Wnt-PLC-IP3-Connexin-Ca2+ axis maintains ependymal motile cilia in zebrafish spinal cord |
title_full_unstemmed |
Wnt-PLC-IP3-Connexin-Ca2+ axis maintains ependymal motile cilia in zebrafish spinal cord |
title_sort |
wnt-plc-ip3-connexin-ca2+ axis maintains ependymal motile cilia in zebrafish spinal cord |
publisher |
Nature Portfolio |
publishDate |
2020 |
url |
https://doaj.org/article/50b03acaa0d0416f90bb32ff426f7eea |
work_keys_str_mv |
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