The structure of a prokaryotic viral envelope protein expands the landscape of membrane fusion proteins

Lipid membrane fusion is an essential function in many biological processes but little is known about membrane fusion in prokaryotes. The authors here study how haloarchaeal pleomorphic viruses (HRPVs) infect archaeal hosts. The structure-function analysis of the spike proteins shed light on prokary...

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Autores principales: Kamel El Omari, Sai Li, Abhay Kotecha, Thomas S. Walter, Eduardo A. Bignon, Karl Harlos, Pentti Somerharju, Felix De Haas, Daniel K. Clare, Mika Molin, Felipe Hurtado, Mengqiu Li, Jonathan M. Grimes, Dennis H. Bamford, Nicole D. Tischler, Juha T. Huiskonen, David I. Stuart, Elina Roine
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Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/31855e58b674426b946b1b8cc027fb2e
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spelling oai:doaj.org-article:31855e58b674426b946b1b8cc027fb2e2021-12-02T16:57:06ZThe structure of a prokaryotic viral envelope protein expands the landscape of membrane fusion proteins10.1038/s41467-019-08728-72041-1723https://doaj.org/article/31855e58b674426b946b1b8cc027fb2e2019-02-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-08728-7https://doaj.org/toc/2041-1723Lipid membrane fusion is an essential function in many biological processes but little is known about membrane fusion in prokaryotes. The authors here study how haloarchaeal pleomorphic viruses (HRPVs) infect archaeal hosts. The structure-function analysis of the spike proteins shed light on prokaryotic membrane fusion.Kamel El OmariSai LiAbhay KotechaThomas S. WalterEduardo A. BignonKarl HarlosPentti SomerharjuFelix De HaasDaniel K. ClareMika MolinFelipe HurtadoMengqiu LiJonathan M. GrimesDennis H. BamfordNicole D. TischlerJuha T. HuiskonenDavid I. StuartElina RoineNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-11 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Kamel El Omari
Sai Li
Abhay Kotecha
Thomas S. Walter
Eduardo A. Bignon
Karl Harlos
Pentti Somerharju
Felix De Haas
Daniel K. Clare
Mika Molin
Felipe Hurtado
Mengqiu Li
Jonathan M. Grimes
Dennis H. Bamford
Nicole D. Tischler
Juha T. Huiskonen
David I. Stuart
Elina Roine
The structure of a prokaryotic viral envelope protein expands the landscape of membrane fusion proteins
description Lipid membrane fusion is an essential function in many biological processes but little is known about membrane fusion in prokaryotes. The authors here study how haloarchaeal pleomorphic viruses (HRPVs) infect archaeal hosts. The structure-function analysis of the spike proteins shed light on prokaryotic membrane fusion.
format article
author Kamel El Omari
Sai Li
Abhay Kotecha
Thomas S. Walter
Eduardo A. Bignon
Karl Harlos
Pentti Somerharju
Felix De Haas
Daniel K. Clare
Mika Molin
Felipe Hurtado
Mengqiu Li
Jonathan M. Grimes
Dennis H. Bamford
Nicole D. Tischler
Juha T. Huiskonen
David I. Stuart
Elina Roine
author_facet Kamel El Omari
Sai Li
Abhay Kotecha
Thomas S. Walter
Eduardo A. Bignon
Karl Harlos
Pentti Somerharju
Felix De Haas
Daniel K. Clare
Mika Molin
Felipe Hurtado
Mengqiu Li
Jonathan M. Grimes
Dennis H. Bamford
Nicole D. Tischler
Juha T. Huiskonen
David I. Stuart
Elina Roine
author_sort Kamel El Omari
title The structure of a prokaryotic viral envelope protein expands the landscape of membrane fusion proteins
title_short The structure of a prokaryotic viral envelope protein expands the landscape of membrane fusion proteins
title_full The structure of a prokaryotic viral envelope protein expands the landscape of membrane fusion proteins
title_fullStr The structure of a prokaryotic viral envelope protein expands the landscape of membrane fusion proteins
title_full_unstemmed The structure of a prokaryotic viral envelope protein expands the landscape of membrane fusion proteins
title_sort structure of a prokaryotic viral envelope protein expands the landscape of membrane fusion proteins
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/31855e58b674426b946b1b8cc027fb2e
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