Distinct pseudokinase domain conformations underlie divergent activation mechanisms among vertebrate MLKL orthologues
The necroptotic cell death pathway involves signaling through pseudokinases. Here the authors define the structural determinants of species specificity in necroptosis signaling mediated by the essential necroptotic effector pseudokinase, Mixed Lineage Kinase Domain-Like (MLKL).
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Nature Portfolio
2020
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oai:doaj.org-article:b93b0f25bce74b3387360f9736d00ebc2021-12-02T17:40:29ZDistinct pseudokinase domain conformations underlie divergent activation mechanisms among vertebrate MLKL orthologues10.1038/s41467-020-16823-32041-1723https://doaj.org/article/b93b0f25bce74b3387360f9736d00ebc2020-06-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-16823-3https://doaj.org/toc/2041-1723The necroptotic cell death pathway involves signaling through pseudokinases. Here the authors define the structural determinants of species specificity in necroptosis signaling mediated by the essential necroptotic effector pseudokinase, Mixed Lineage Kinase Domain-Like (MLKL).Katherine A. DaviesCheree FitzgibbonSamuel N. YoungSarah E. GarnishWayland YeungDiane CoursierRichard W. BirkinshawJarrod J. SandowWil I. L. LehmannLung-Yu LiangIsabelle S. LucetJames D. ChalmersWayne M. PatrickNatarajan KannanEmma J. PetriePeter E. CzabotarJames M. MurphyNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-11 (2020) |
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Science Q Katherine A. Davies Cheree Fitzgibbon Samuel N. Young Sarah E. Garnish Wayland Yeung Diane Coursier Richard W. Birkinshaw Jarrod J. Sandow Wil I. L. Lehmann Lung-Yu Liang Isabelle S. Lucet James D. Chalmers Wayne M. Patrick Natarajan Kannan Emma J. Petrie Peter E. Czabotar James M. Murphy Distinct pseudokinase domain conformations underlie divergent activation mechanisms among vertebrate MLKL orthologues |
description |
The necroptotic cell death pathway involves signaling through pseudokinases. Here the authors define the structural determinants of species specificity in necroptosis signaling mediated by the essential necroptotic effector pseudokinase, Mixed Lineage Kinase Domain-Like (MLKL). |
format |
article |
author |
Katherine A. Davies Cheree Fitzgibbon Samuel N. Young Sarah E. Garnish Wayland Yeung Diane Coursier Richard W. Birkinshaw Jarrod J. Sandow Wil I. L. Lehmann Lung-Yu Liang Isabelle S. Lucet James D. Chalmers Wayne M. Patrick Natarajan Kannan Emma J. Petrie Peter E. Czabotar James M. Murphy |
author_facet |
Katherine A. Davies Cheree Fitzgibbon Samuel N. Young Sarah E. Garnish Wayland Yeung Diane Coursier Richard W. Birkinshaw Jarrod J. Sandow Wil I. L. Lehmann Lung-Yu Liang Isabelle S. Lucet James D. Chalmers Wayne M. Patrick Natarajan Kannan Emma J. Petrie Peter E. Czabotar James M. Murphy |
author_sort |
Katherine A. Davies |
title |
Distinct pseudokinase domain conformations underlie divergent activation mechanisms among vertebrate MLKL orthologues |
title_short |
Distinct pseudokinase domain conformations underlie divergent activation mechanisms among vertebrate MLKL orthologues |
title_full |
Distinct pseudokinase domain conformations underlie divergent activation mechanisms among vertebrate MLKL orthologues |
title_fullStr |
Distinct pseudokinase domain conformations underlie divergent activation mechanisms among vertebrate MLKL orthologues |
title_full_unstemmed |
Distinct pseudokinase domain conformations underlie divergent activation mechanisms among vertebrate MLKL orthologues |
title_sort |
distinct pseudokinase domain conformations underlie divergent activation mechanisms among vertebrate mlkl orthologues |
publisher |
Nature Portfolio |
publishDate |
2020 |
url |
https://doaj.org/article/b93b0f25bce74b3387360f9736d00ebc |
work_keys_str_mv |
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