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Synthetic model complexes for studying light-driven electron transfer in photosynthesis

✍ Scribed by Shu-I Tu; Yuan J. Tan; Jui H. Wang


Book ID
104106006
Publisher
Elsevier Science
Year
1971
Weight
970 KB
Volume
1
Category
Article
ISSN
0006-3061

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✦ Synopsis


Mixed multimolecular layers of ethyl chlorophyllide a and lumiflavin were prepared and found to exhibit a difference absorption spectrum against multimolecular layers of pure ethyl chlorophyllide a, with a maximum at 698 nm and a minimum at 670 nm in the 520-800 nm range. Similarly, molecular complexes of chlorophyllin a and lumiflavin dissolved in aqueous phosphate buffer containing poly-N-vinylpyrrolidone exhibited a difference absorption spectrum against the uncomplexed components, with a maximum near 695 nm and a minimum near 660 nm in the same wavelength range. The maxima in both difference spectra can be bleached reversibly by red light. The bleached samples recovered in the dark at room temperature with half-lives of 46 and 75 msec, respectively. The photobleaching was accompanied by the generation of electron spin resonance signals which are interpretable in terms of the oxidized chlorophyll radical and the lumiflavin radical. The photochemical properties of these model complexes are compared with those of PT00, and their possible relevance to the primary energy conversion mechanism in photosynthesis is discussed.


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