2014
DOI: 10.1021/ja5097946
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Structural Basis of the Green–Blue Color Switching in Proteorhodopsin as Determined by NMR Spectroscopy

Abstract: Proteorhodopsins (PRs) found in marine microbes are the most abundant retinal-based photoreceptors on this planet. PR variants show high levels of environmental adaptation, as their colors are tuned to the optimal wavelength of available light. The two major green and blue subfamilies can be interconverted through a L/Q point mutation at position 105. Here we reveal the structural basis behind this intriguing color-tuning effect. High-field solid-state NMR spectroscopy was used to visualize structural changes … Show more

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Cited by 52 publications
(98 citation statements)
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“…Measurements of the H-C14-C15-H retinal torsional angle revealed a significant out-of-plane twist with an angle of 158°± 2°. A similar out-of-plane twist has also been observed for bacteriorhodopsin (164°) (53) and green proteorhodopsin (161°) (47), indicating that this out-of-plane twist is a general property of microbial retinal rhodopsins and might help to provide a favorable orientation of the Schiff base during the subsequent photocycle steps. (Fig.…”
Section: Resultssupporting
confidence: 66%
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“…Measurements of the H-C14-C15-H retinal torsional angle revealed a significant out-of-plane twist with an angle of 158°± 2°. A similar out-of-plane twist has also been observed for bacteriorhodopsin (164°) (53) and green proteorhodopsin (161°) (47), indicating that this out-of-plane twist is a general property of microbial retinal rhodopsins and might help to provide a favorable orientation of the Schiff base during the subsequent photocycle steps. (Fig.…”
Section: Resultssupporting
confidence: 66%
“…2C). The obtained value of 1.51 ± 0.02 Å is significantly longer than the 1.42 Å observed for green proteorhodopsin (47). This increase in bond length corresponds well with a lower double-bond character of the bond as expected from the blue shift of the absorption maximum compared with green proteorhodopsin.…”
Section: Resultssupporting
confidence: 50%
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“…Because of the small number of spins and the small amount of labeled retinal available, signal enhancement on the basis of DNP was applied. Using TOTAPOL (27) as a polarizing agent, a 20-fold signal enhancement was achieved, as reported previously (21,22). (Fig.…”
supporting
confidence: 74%
“…A major issue in MAS ssNMR is obtaining high quality spectra (good signal-to-noise ratio, high spectral resolution). The growing repertoire of polarization transfer schemes (reviewed in [68][69][70][71]), access to high magnetic fields (up to 1 GHz), the development of fast to ultra-fast MAS probes [72][73][74] and associated methods [75,76], the development of efficient rotor filling procedures [77,78], the use of specific labeling schemes [79][80][81][82][83], the development of proton detected experiments [74,[84][85][86][87][88][89][90][91][92][93][94][95][96][97][98][99][100][101], and biomolecular dynamic nuclear polarization [60,[102][103][104][105][106][107][108][109][110][111][112]<...>…”
mentioning
confidence: 99%