THE PHOTOPHYSICS OF MONOMERIC BACTERIOCHLOROPHYLLS-C AND BACTERIOCHLOROPHYLLS-D AND THEIR DERIVATIVES - PROPERTIES OF THE TRIPLET-STATE AND SINGLET OXYGEN PHOTOGENERATION AND QUENCHING

被引:39
作者
KRASNOVSKY, AA [1 ]
CHENG, P [1 ]
BLANKENSHIP, RE [1 ]
MOORE, TA [1 ]
GUST, D [1 ]
机构
[1] MOSCOW MV LOMONOSOV STATE UNIV,DEPT BIOL,MOSCOW 119899,RUSSIA
关键词
D O I
10.1111/j.1751-1097.1993.tb02295.x
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Measurements of pigment triplet-triplet absorption, pigment phosphorescence and photosensitized singlet oxygen luminescence were carried out on solutions containing monomeric bacteriochlorophylls (Bchl) c and d, isolated from green photosynthetic bacteria, and their magnesium-free and farnesyl-free analogs. The energies of the pigment triplet states fell in the range 1.29-1.34 eV. The triplet lifetimes in aerobic solutions were 200-250 ns; they increased to 280 +/- 70 mus after nitrogen purging in liquid solutions and to 0.7-2.1 ms in a solid matrix at ambient or liquid nitrogen temperatures. Rate constants for quenching of the pigment triplet state by oxygen were (2.0-2.5) x 10(9) M-1 s-1, which is close to 1/9 of the rate constant for diffusion-controlled reactions. This quenching was accompanied by singlet oxygen formation. The quantum yields for the triplet state formation and singlet oxygen production were 55-75% in air-saturated solutions. Singlet oxygen quenching by ground-state pigment molecules was observed. Quenching was the most efficient for magnesium-containing pigments, k(q) = (0.31-1.2) x 10(9) m-1 s-1. It is caused mainly by a physical process of singlet oxygen (O-1(2)) deactivation. Thus, Bchl c and d and their derivatives, as well as chlorophyll and Bchl a, combine a high efficiency of singlet oxygen production with the ability to protect photochemical and photobiological systems against damage by singlet oxygen.
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页码:324 / 330
页数:7
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