Real-time visualization of conformational changes within single MloK1 cyclic nucleotide-modulated channels
Some ion channels are modulated by binding of cyclic nucleotide to a cyclic nucleotide-binding domain. Here, the authors use high-speed atomic force microscopy to directly monitor the conformational changes induced by ligand binding to a cyclic nucleotide-modulated channel from Mesorhizobium loti.
Guardado en:
Autores principales: | , , , , , |
---|---|
Formato: | article |
Lenguaje: | EN |
Publicado: |
Nature Portfolio
2016
|
Materias: | |
Acceso en línea: | https://doaj.org/article/00cdeb3d89d7440fa91c5c72fa6ce7e5 |
Etiquetas: |
Agregar Etiqueta
Sin Etiquetas, Sea el primero en etiquetar este registro!
|
id |
oai:doaj.org-article:00cdeb3d89d7440fa91c5c72fa6ce7e5 |
---|---|
record_format |
dspace |
spelling |
oai:doaj.org-article:00cdeb3d89d7440fa91c5c72fa6ce7e52021-12-02T17:33:06ZReal-time visualization of conformational changes within single MloK1 cyclic nucleotide-modulated channels10.1038/ncomms127892041-1723https://doaj.org/article/00cdeb3d89d7440fa91c5c72fa6ce7e52016-09-01T00:00:00Zhttps://doi.org/10.1038/ncomms12789https://doaj.org/toc/2041-1723Some ion channels are modulated by binding of cyclic nucleotide to a cyclic nucleotide-binding domain. Here, the authors use high-speed atomic force microscopy to directly monitor the conformational changes induced by ligand binding to a cyclic nucleotide-modulated channel from Mesorhizobium loti.Martina RanglAtsushi MiyagiJulia KowalHenning StahlbergCrina M. NimigeanSimon ScheuringNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-8 (2016) |
institution |
DOAJ |
collection |
DOAJ |
language |
EN |
topic |
Science Q |
spellingShingle |
Science Q Martina Rangl Atsushi Miyagi Julia Kowal Henning Stahlberg Crina M. Nimigean Simon Scheuring Real-time visualization of conformational changes within single MloK1 cyclic nucleotide-modulated channels |
description |
Some ion channels are modulated by binding of cyclic nucleotide to a cyclic nucleotide-binding domain. Here, the authors use high-speed atomic force microscopy to directly monitor the conformational changes induced by ligand binding to a cyclic nucleotide-modulated channel from Mesorhizobium loti. |
format |
article |
author |
Martina Rangl Atsushi Miyagi Julia Kowal Henning Stahlberg Crina M. Nimigean Simon Scheuring |
author_facet |
Martina Rangl Atsushi Miyagi Julia Kowal Henning Stahlberg Crina M. Nimigean Simon Scheuring |
author_sort |
Martina Rangl |
title |
Real-time visualization of conformational changes within single MloK1 cyclic nucleotide-modulated channels |
title_short |
Real-time visualization of conformational changes within single MloK1 cyclic nucleotide-modulated channels |
title_full |
Real-time visualization of conformational changes within single MloK1 cyclic nucleotide-modulated channels |
title_fullStr |
Real-time visualization of conformational changes within single MloK1 cyclic nucleotide-modulated channels |
title_full_unstemmed |
Real-time visualization of conformational changes within single MloK1 cyclic nucleotide-modulated channels |
title_sort |
real-time visualization of conformational changes within single mlok1 cyclic nucleotide-modulated channels |
publisher |
Nature Portfolio |
publishDate |
2016 |
url |
https://doaj.org/article/00cdeb3d89d7440fa91c5c72fa6ce7e5 |
work_keys_str_mv |
AT martinarangl realtimevisualizationofconformationalchangeswithinsinglemlok1cyclicnucleotidemodulatedchannels AT atsushimiyagi realtimevisualizationofconformationalchangeswithinsinglemlok1cyclicnucleotidemodulatedchannels AT juliakowal realtimevisualizationofconformationalchangeswithinsinglemlok1cyclicnucleotidemodulatedchannels AT henningstahlberg realtimevisualizationofconformationalchangeswithinsinglemlok1cyclicnucleotidemodulatedchannels AT crinamnimigean realtimevisualizationofconformationalchangeswithinsinglemlok1cyclicnucleotidemodulatedchannels AT simonscheuring realtimevisualizationofconformationalchangeswithinsinglemlok1cyclicnucleotidemodulatedchannels |
_version_ |
1718380039719878656 |