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1.
Org Biomol Chem ; 14(24): 5468-76, 2016 Jun 15.
Article in English | MEDLINE | ID: mdl-27181459

ABSTRACT

Site-directed spin labeling (SDSL) in combination with electron paramagnetic resonance (EPR) spectroscopy allows studying the structure, dynamics, and interactions of proteins via distance measurements in the nanometer range. We here give an overview of available spin labels, the strategies for their introduction into proteins, and the associated potentials for protein structural studies in vitro and in the context of living cells.


Subject(s)
Escherichia coli/chemistry , Proteins/chemistry , Electron Spin Resonance Spectroscopy , Escherichia coli/cytology , Protein Conformation , Spin Labels
2.
Methods Enzymol ; 563: 483-502, 2015.
Article in English | MEDLINE | ID: mdl-26478496

ABSTRACT

Electron paramagnetic resonance (EPR) spectroscopy in combination with site-directed spin labeling (SDSL) is a powerful approach to study the structure, dynamics, and interactions of proteins. The genetic encoding of the noncanonical amino acid spin-labeled lysine 1 (SLK-1) eliminates the need for any chemical labeling steps in SDSL-EPR studies and enables the investigation of native, endogenous proteins with minimal structural perturbation, and without the need to create unique reactive sites for chemical labeling. We report detailed experimental procedures for the efficient synthesis of SLK-1, the expression and purification of SLK-1-containing proteins under conditions that ensure maximal integrity of the nitroxide radical moiety, and procedures for intramolecular EPR distance measurements in proteins by double electron-electron resonance.


Subject(s)
Electron Spin Resonance Spectroscopy/methods , Proteins/chemistry , Spin Labels , Amino Acids/chemistry , Electrons , Nitrogen Oxides/chemistry
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