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HDX-guided EPR spectroscopy to interrogate membrane protein dynamics.


ABSTRACT: Solvent accessibilities of and distances between protein residues measured by pulsed-EPR approaches provide high-resolution information on dynamic protein motions. We describe protocols for the purification and site-directed spin labeling of integral membrane proteins. In our protocol, peptide-level HDX-MS is used as a precursor to guide single-residue resolution ESEEM accessibility measurements and spin labeling strategies for EPR applications. Exploiting the pentameric MscL channel as a model, we discuss the use of cwEPR, DEER/PELDOR, and ESEEM spectroscopies to interrogate membrane protein dynamics. For complete details on the use and execution of this protocol, please refer to Wang et al. (2022).

SUBMITTER: Lane BJ 

PROVIDER: S-EPMC9304679 | biostudies-literature | 2022 Sep

REPOSITORIES: biostudies-literature

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HDX-guided EPR spectroscopy to interrogate membrane protein dynamics.

Lane Benjamin J BJ   Wang Bolin B   Ma Yue Y   Calabrese Antonio N AN   El Mkami Hassane H   Pliotas Christos C  

STAR protocols 20220718 3


Solvent accessibilities of and distances between protein residues measured by pulsed-EPR approaches provide high-resolution information on dynamic protein motions. We describe protocols for the purification and site-directed spin labeling of integral membrane proteins. In our protocol, peptide-level HDX-MS is used as a precursor to guide single-residue resolution ESEEM accessibility measurements and spin labeling strategies for EPR applications. Exploiting the pentameric MscL channel as a model,  ...[more]

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