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Global structural changes of an ion channel during its gating are followed by ion mobility mass spectrometry.


ABSTRACT: Mechanosensitive ion channels are sensors probing membrane tension in all species; despite their importance and vital role in many cell functions, their gating mechanism remains to be elucidated. Here, we determined the conditions for releasing intact mechanosensitive channel of large conductance (MscL) proteins from their detergents in the gas phase using native ion mobility-mass spectrometry (IM-MS). By using IM-MS, we could detect the native mass of MscL from Escherichia coli, determine various global structural changes during its gating by measuring the rotationally averaged collision cross-sections, and show that it can function in the absence of a lipid bilayer. We could detect global conformational changes during MscL gating as small as 3%. Our findings will allow studying native structure of many other membrane proteins.

SUBMITTER: Konijnenberg A 

PROVIDER: S-EPMC4260606 | biostudies-literature | 2014 Dec

REPOSITORIES: biostudies-literature

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Global structural changes of an ion channel during its gating are followed by ion mobility mass spectrometry.

Konijnenberg Albert A   Yilmaz Duygu D   Ingólfsson Helgi I HI   Dimitrova Anna A   Marrink Siewert J SJ   Li Zhuolun Z   Vénien-Bryan Catherine C   Sobott Frank F   Koçer Armağan A  

Proceedings of the National Academy of Sciences of the United States of America 20141117 48


Mechanosensitive ion channels are sensors probing membrane tension in all species; despite their importance and vital role in many cell functions, their gating mechanism remains to be elucidated. Here, we determined the conditions for releasing intact mechanosensitive channel of large conductance (MscL) proteins from their detergents in the gas phase using native ion mobility-mass spectrometry (IM-MS). By using IM-MS, we could detect the native mass of MscL from Escherichia coli, determine vario  ...[more]

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