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FT-IR Characterization of the Light-Induced Ni-L2 and Ni-L3 States of [NiFe] Hydrogenase from Desulfovibrio vulgaris Miyazaki F
Different light-induced Ni-L states
of [NiFe] hydrogenase from
its Ni-C state have previously been observed by EPR spectroscopy.
Herein, we succeeded in detecting simultaneously two Ni-L states of
[NiFe] hydrogenase from Desulfovibrio vulgaris Miyazaki F by FT-IR spectroscopy. A new light-induced ν<sub>CO</sub> band at 1890 cm<sup>–1</sup> and ν<sub>CN</sub> bands at 2034 and 2047 cm<sup>–1</sup> were detected in the
FT-IR spectra of the H<sub>2</sub>-activated enzyme under N<sub>2</sub> atmosphere at basic conditions, in addition to the 1910 cm<sup>–1</sup> ν<sub>CO</sub> band and 2047 and 2061 cm<sup>–1</sup> ν<sub>CN</sub> bands of the Ni-L2 state. The new bands were
attributed to the Ni-L3 state by comparison of the FT-IR and EPR spectra.
The ν<sub>CO</sub> and ν<sub>CN</sub> frequencies of the
Ni-L3 state are the lowest frequencies observed among the corresponding
frequencies of standard-type [NiFe] hydrogenases in various redox
states. These results indicate that a residue, presumably Ni-coordinating
Cys546, is protonated and deprotonated in the Ni-L2 and Ni-L3 states,
respectively. Relatively small Δ<i>H</i> (6.4 ±
0.8 kJ mol<sup>–1</sup>) and Δ<i>S</i> (25.5
± 10.3 J mol<sup>–1</sup> K<sup>–1</sup>) values
were obtained for the conversion from the Ni-L2 to Ni-L3 state, which
was in agreement with the previous proposals that deprotonation of
Cys546 is important for the catalytic reaction of the enzyme