S. Kaminaka et Ra. Mathies, Time-resolved ultraviolet resonance Raman of protein structural changes inthe KL-intermediate of bacteriorhodopsin, LASER CHEM, 19(1-4), 1999, pp. 165-168
To obtain high quality time-resolved ultraviolet resonance Raman (UVRR) spe
ctra of transient intermediates in the bacteriorhodopsin (BR) photocycle, w
e developed a new UVRR spectrometer A home-made F = 3.5 prism prefilter was
used in Front of a 50 cm CCD detected spectrograph to give high throughput
, wide tunability, and excellent stray light rejection along with low dispe
rsion. Using this system, we obtained 239.5 nm excited time-resolved UVRR s
pectra of BR which revealed small but significant features associated with
the formation of the KL-intermediate at 10 ns delays. This difference spect
rum exhibits intensity decreases at 1624, 1561, 1012 and 763 cm(-1) due to
an altered environment of one or more Trp residues and a frequency shift of
the Tyr nu(8b) band at 1602 cm. These signals show that the photoisomeriza
tion of retinal from an-trans to 13-cis induces significant changes in the
structure and environment of aromatic residues that line the retinal bindin
g pocket in only 10 ns.