Ezrin enhances line tension along transcellular tunnel edges via NMIIa driven actomyosin cable formation
Holes in endothelial barriers, called transendothelial cell macroapertures (TEMs), are predicted to be limited by line tension of unknown origin. Here the authors identify an actomyosin cable encircling TEMs and establish a role for ezrin in stabilising F-actin bundles, allowing their crosslinking b...
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Nature Portfolio
2017
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oai:doaj.org-article:b124a0879bef45a0aa24bea545ed4ff22021-12-02T15:38:46ZEzrin enhances line tension along transcellular tunnel edges via NMIIa driven actomyosin cable formation10.1038/ncomms158392041-1723https://doaj.org/article/b124a0879bef45a0aa24bea545ed4ff22017-06-01T00:00:00Zhttps://doi.org/10.1038/ncomms15839https://doaj.org/toc/2041-1723Holes in endothelial barriers, called transendothelial cell macroapertures (TEMs), are predicted to be limited by line tension of unknown origin. Here the authors identify an actomyosin cable encircling TEMs and establish a role for ezrin in stabilising F-actin bundles, allowing their crosslinking by non-muscle myosin IIa.Caroline StefaniDavid Gonzalez-RodriguezYosuke SenjuAnne DoyeNadia EfimovaSébastien JanelJustine LipumaMeng Chen TsaiDaniel HamaouiMadhavi P. MaddugodaOlivier Cochet-EscartinColine PrévostFrank LafontTatyana SvitkinaPekka LappalainenPatricia BassereauEmmanuel LemichezNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-14 (2017) |
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Science Q Caroline Stefani David Gonzalez-Rodriguez Yosuke Senju Anne Doye Nadia Efimova Sébastien Janel Justine Lipuma Meng Chen Tsai Daniel Hamaoui Madhavi P. Maddugoda Olivier Cochet-Escartin Coline Prévost Frank Lafont Tatyana Svitkina Pekka Lappalainen Patricia Bassereau Emmanuel Lemichez Ezrin enhances line tension along transcellular tunnel edges via NMIIa driven actomyosin cable formation |
description |
Holes in endothelial barriers, called transendothelial cell macroapertures (TEMs), are predicted to be limited by line tension of unknown origin. Here the authors identify an actomyosin cable encircling TEMs and establish a role for ezrin in stabilising F-actin bundles, allowing their crosslinking by non-muscle myosin IIa. |
format |
article |
author |
Caroline Stefani David Gonzalez-Rodriguez Yosuke Senju Anne Doye Nadia Efimova Sébastien Janel Justine Lipuma Meng Chen Tsai Daniel Hamaoui Madhavi P. Maddugoda Olivier Cochet-Escartin Coline Prévost Frank Lafont Tatyana Svitkina Pekka Lappalainen Patricia Bassereau Emmanuel Lemichez |
author_facet |
Caroline Stefani David Gonzalez-Rodriguez Yosuke Senju Anne Doye Nadia Efimova Sébastien Janel Justine Lipuma Meng Chen Tsai Daniel Hamaoui Madhavi P. Maddugoda Olivier Cochet-Escartin Coline Prévost Frank Lafont Tatyana Svitkina Pekka Lappalainen Patricia Bassereau Emmanuel Lemichez |
author_sort |
Caroline Stefani |
title |
Ezrin enhances line tension along transcellular tunnel edges via NMIIa driven actomyosin cable formation |
title_short |
Ezrin enhances line tension along transcellular tunnel edges via NMIIa driven actomyosin cable formation |
title_full |
Ezrin enhances line tension along transcellular tunnel edges via NMIIa driven actomyosin cable formation |
title_fullStr |
Ezrin enhances line tension along transcellular tunnel edges via NMIIa driven actomyosin cable formation |
title_full_unstemmed |
Ezrin enhances line tension along transcellular tunnel edges via NMIIa driven actomyosin cable formation |
title_sort |
ezrin enhances line tension along transcellular tunnel edges via nmiia driven actomyosin cable formation |
publisher |
Nature Portfolio |
publishDate |
2017 |
url |
https://doaj.org/article/b124a0879bef45a0aa24bea545ed4ff2 |
work_keys_str_mv |
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