Sequential conformational transitions and α-helical supercoiling regulate a sensor histidine kinase

Sensor histidine kinases (SHK) consist of sensor, linker and kinase modules and different models for SHK signal transduction have been proposed. Here the authors present nano- to millisecond time-resolved X-ray scattering measurements, which reveal a structural mechanism for kinase domain activation...

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Autores principales: Oskar Berntsson, Ralph P. Diensthuber, Matthijs R. Panman, Alexander Björling, Emil Gustavsson, Maria Hoernke, Ashley J. Hughes, Léocadie Henry, Stephan Niebling, Heikki Takala, Janne A. Ihalainen, Gemma Newby, Silke Kerruth, Joachim Heberle, Marianne Liebi, Andreas Menzel, Robert Henning, Irina Kosheleva, Andreas Möglich, Sebastian Westenhoff
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Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/709b281f1d2d49dab68fadc575667aba
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spelling oai:doaj.org-article:709b281f1d2d49dab68fadc575667aba2021-12-02T13:24:15ZSequential conformational transitions and α-helical supercoiling regulate a sensor histidine kinase10.1038/s41467-017-00300-52041-1723https://doaj.org/article/709b281f1d2d49dab68fadc575667aba2017-08-01T00:00:00Zhttps://doi.org/10.1038/s41467-017-00300-5https://doaj.org/toc/2041-1723Sensor histidine kinases (SHK) consist of sensor, linker and kinase modules and different models for SHK signal transduction have been proposed. Here the authors present nano- to millisecond time-resolved X-ray scattering measurements, which reveal a structural mechanism for kinase domain activation in SHK.Oskar BerntssonRalph P. DiensthuberMatthijs R. PanmanAlexander BjörlingEmil GustavssonMaria HoernkeAshley J. HughesLéocadie HenryStephan NieblingHeikki TakalaJanne A. IhalainenGemma NewbySilke KerruthJoachim HeberleMarianne LiebiAndreas MenzelRobert HenningIrina KoshelevaAndreas MöglichSebastian WestenhoffNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-8 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Oskar Berntsson
Ralph P. Diensthuber
Matthijs R. Panman
Alexander Björling
Emil Gustavsson
Maria Hoernke
Ashley J. Hughes
Léocadie Henry
Stephan Niebling
Heikki Takala
Janne A. Ihalainen
Gemma Newby
Silke Kerruth
Joachim Heberle
Marianne Liebi
Andreas Menzel
Robert Henning
Irina Kosheleva
Andreas Möglich
Sebastian Westenhoff
Sequential conformational transitions and α-helical supercoiling regulate a sensor histidine kinase
description Sensor histidine kinases (SHK) consist of sensor, linker and kinase modules and different models for SHK signal transduction have been proposed. Here the authors present nano- to millisecond time-resolved X-ray scattering measurements, which reveal a structural mechanism for kinase domain activation in SHK.
format article
author Oskar Berntsson
Ralph P. Diensthuber
Matthijs R. Panman
Alexander Björling
Emil Gustavsson
Maria Hoernke
Ashley J. Hughes
Léocadie Henry
Stephan Niebling
Heikki Takala
Janne A. Ihalainen
Gemma Newby
Silke Kerruth
Joachim Heberle
Marianne Liebi
Andreas Menzel
Robert Henning
Irina Kosheleva
Andreas Möglich
Sebastian Westenhoff
author_facet Oskar Berntsson
Ralph P. Diensthuber
Matthijs R. Panman
Alexander Björling
Emil Gustavsson
Maria Hoernke
Ashley J. Hughes
Léocadie Henry
Stephan Niebling
Heikki Takala
Janne A. Ihalainen
Gemma Newby
Silke Kerruth
Joachim Heberle
Marianne Liebi
Andreas Menzel
Robert Henning
Irina Kosheleva
Andreas Möglich
Sebastian Westenhoff
author_sort Oskar Berntsson
title Sequential conformational transitions and α-helical supercoiling regulate a sensor histidine kinase
title_short Sequential conformational transitions and α-helical supercoiling regulate a sensor histidine kinase
title_full Sequential conformational transitions and α-helical supercoiling regulate a sensor histidine kinase
title_fullStr Sequential conformational transitions and α-helical supercoiling regulate a sensor histidine kinase
title_full_unstemmed Sequential conformational transitions and α-helical supercoiling regulate a sensor histidine kinase
title_sort sequential conformational transitions and α-helical supercoiling regulate a sensor histidine kinase
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/709b281f1d2d49dab68fadc575667aba
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