STRUCTURE-FUNCTION-RELATIONSHIPS IN THE 47-KDA ANTENNA PROTEIN AND ITS COMPLEX WITH THE PHOTOSYSTEM-II REACTION-CENTER CORE - INSIGHTS FROMPICOSECOND FLUORESCENCE DECAY KINETICS AND RESONANCE RAMAN-SPECTROSCOPY
Jc. Depaula et al., STRUCTURE-FUNCTION-RELATIONSHIPS IN THE 47-KDA ANTENNA PROTEIN AND ITS COMPLEX WITH THE PHOTOSYSTEM-II REACTION-CENTER CORE - INSIGHTS FROMPICOSECOND FLUORESCENCE DECAY KINETICS AND RESONANCE RAMAN-SPECTROSCOPY, Biochemistry, 33(6), 1994, pp. 1455-1466
We report the fluorescence decay kinetics and, the vibrational propert
ies of Chlorophyll a bound to the 47-kDa antenna protein (CP47) of spi
nach photosystem II. The chlorophyll fluorescence of CP47 samples deca
ys with four lifetimes (tau = 75.8 ps, 1.05 ns, 3.22 ns, and 5.41 ns).
The 75.8-ps and 3.22-ns components are associated with chlorophyll a
bound tb relatively intact centers, the 1.05-ns component corresponds
to chlorophyll bound to centers that are slightly perturbed, and the t
he 5.41-ns phase probably originates from centers that are severely de
natured. The resonance Raman spectrum of CP47 at 441.6 nm (this work)
and at 406.7 nm [de Paula, J. C.; Ghanotakis, D. F., Bowlby, N. R., De
kker, J. P., Yocum, C. F., & Babcock, G. T. (1990) in Current Research
in Photosynthesis (Baltscheffsky, M., Ed.), Vol. I, pp 643-646, Kluwe
r Academic Publishers, Dordrecht, The Netherlands] shows heterogeneity
in the C=0 stretching region. This part of the spectrum monitors the
environment of the keto group at position 9 of the chlorophyll a molec
ule. We show that several structurally distinct pools of chlorophyll a
are bound to CP47. Four of these may be distinguished by their C-9=0
stretching frequencies (nu(C=O) = 1670, 1688, 1693, and 1701 cm(-1)).
By analyzing the resonance enhancement pattern of these modes, we ascr
ibe the 1693-cm(-1) vibration to denatured centers. Of the remaining p
opulations, we propose that the 1670-cm(-1) vibration is consistent wi
th a hydrogen bond between the C-9=0 group of chlorophyll a and the pr
otein. We elaborate on the role of this chromophore-protein interactio
n in the mechanism of energy transfer within the 47-kDa antenna protei
n.