1H-Detected Solid-State NMR Studies of Water-Inaccessible Proteins In Vitro and In Situ

Publication date

2016-10-17

Authors

Medeiros Silva, JoãoISNI 0000000391138381
Mance, DeniISNI 0000000506025003
Daniëls, MarkISNI 0000000506356961
Jekhmane, ShehrazadeISNI 0000000506013870
Houben, KISNI 000000039586206X
Baldus, M.ISNI 0000000139673796
Weingarth, M.H.ISNI 0000000358154718

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Abstract

1H detection can significantly improve solid-state NMR spectral sensitivity and thereby allows studying more complex proteins. However, the common prerequisite for 1H detection is the introduction of exchangeable protons in otherwise deuterated proteins, which has thus far significantly hampered studies of partly water-inaccessible proteins, such as membrane proteins. Herein, we present an approach that enables high-resolution 1H-detected solid-state NMR (ssNMR) studies of water-inaccessible proteins, and that even works in highly complex environments such as cellular surfaces. In particular, the method was applied to study the K+ channel KcsA in liposomes and in situ in native bacterial cell membranes. We used our data for a dynamic analysis, and we show that the selectivity filter, which is responsible for ion conduction and highly conserved in K+ channels, undergoes pronounced molecular motion. We expect this approach to open new avenues for biomolecular ssNMR.

Keywords

in-cell NMR spectroscopy, membrane proteins, protein dynamics, proton detection, solid-state NMR spectroscopy, Catalysis, General Chemistry

Citation

Medeiros-Silva, J, Mance, D, Daniëls, M, Jekhmane, M, Houben, K, Baldus, M & Weingarth, M 2016, '1 H-Detected Solid-State NMR Studies of Water-Inaccessible Proteins In Vitro and In Situ', Angewandte Chemie - International Edition, vol. 55, no. 43, pp. 13606-13610. https://doi.org/10.1002/anie.201606594