| Literature DB >> 33197077 |
Sophie Ketter1, Aathira Gopinath1, Olga Rogozhnikova2, Dmitrii Trukhin2, Victor M Tormyshev2, Elena G Bagryanskaya2, Benesh Joseph1.
Abstract
In situ investigation of membrane proteins is a challenging task. Previously we demonstrated that nitroxide labels combined with pulsed ESR spectroscopy is a promising tool for this purpose. However, the nitroxide labels suffer from poor stability, high background labeling, and low sensitivity. Here we show that Finland (FTAM) and OX063 based labels enable labeling of the cobalamin transporter BtuB and BamA, the central component of the β-barrel assembly machinery (BAM) complex, in E coli. Compared to the methanethiosulfonate spin label (MTSL), trityl labels eliminated the background signals and enabled specific in situ labeling of the proteins with high efficiency. The OX063 labels show a long phase memory time (TM ) of ≈5 μs. All the trityls enabled distance measurements between BtuB and an orthogonally labeled substrate with high selectivity and sensitivity down to a few μm concentration. Our data corroborate the BtuB and BamA conformations in the cellular environment of E. coli.Entities:
Keywords: DEER or PELDOR; FTAM and OX063; membrane protein; spin labeling; β-barrel assembly machinery (BAM) complex
Year: 2021 PMID: 33197077 DOI: 10.1002/chem.202004606
Source DB: PubMed Journal: Chemistry ISSN: 0947-6539 Impact factor: 5.236