2006
DOI: 10.1007/bf03166206
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High-field EPR and site-directed spin labeling reveal a periodical polarity profile: The sequence 88 to 94 of the phototransducer NpHtrII in complex with sensory rhodopsin, NpSRII

Abstract: Taking advantage of the improved spectral resolution of high-field electron paramagnetic resonance (EPR) at 95 GHz/3.4 Tas compared to conventional X-band EPR (9.5 GHz/0.34 T), detailed information on the polarity profile in a protein-protein interface is obtained. Nitroxide spin label side chains are introduced at positions 88 to 94 in the AS-1 sequence of the membrane adjacent HAMP domain of the transducer protein, NpHtrII, which is reconstituted in complex with sensory rhodopsin, NpSRII from Natronobacteriu… Show more

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Cited by 17 publications
(18 citation statements)
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“…5B), suggesting the presence of an ␣-helical structure, also demonstrated by high field EPR analysis (34). Starting from position 95, where the two spectral components are clearly distinguishable, the mobility data are biased toward dynamic component 2 (13).…”
mentioning
confidence: 82%
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“…5B), suggesting the presence of an ␣-helical structure, also demonstrated by high field EPR analysis (34). Starting from position 95, where the two spectral components are clearly distinguishable, the mobility data are biased toward dynamic component 2 (13).…”
mentioning
confidence: 82%
“…During the fitting procedure, the g tensor values, the values of A xx and A yy of the hyperfine tensor and the Lorentzian and Gaussian line width parameters were fixed to the values found for the corresponding reference spectra of the singly labeled species. The g tensor parameters used were determined by fitting the low temperature spectra detected at 95 GHz (34). A xx and A yy were fixed to 0.58 and 0.42 mT, respectively, whereas A zz was variable to account for differences in the polarity of the immediate spin label environment (34,35).…”
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confidence: 99%
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“…The polarity parameter values for the sequence 88 to 94 in the first HAMP domain of NpHtrII in complex with NpSRII are shown in Figure 5A (Brutlach et al, 2006). It is evident that positions 90 and 93 in NpHtrII are located in a more polar, water accessible environment.…”
Section: Polarity and Proticity Of The Spin Label Micro-environmentmentioning
confidence: 98%
“…By balancing the paths lengths associated with the IF source, the video contribution of the phase noise of this DRO (-80 dBc at 10 kHz) could be suppressed by more than 46 dB. Steinhoff et al [100] used the same design in their 95-GHz instrument. Prisner et al [38] used this principle in their 180-GHz pulse EPR spectrometer.…”
Section: Heterodyne Bridgesmentioning
confidence: 99%