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Pigment content and molar extinction coefficients of photochemical reaction centers from Rhodopseudomonas spheroides
Authors:Susan C. Straley   William W. Parson   David C. Mauzerall  Roderick K. Clayton
Affiliation:

a Division of Biological Sciences, Cornell University, Ithaca, N.Y., U.S.A.

b Department of Biochemistry, University of Washington, Seattle, Wash. 98195, U.S.A.

c The Rockefeller University, New York, N.Y. 10021, U.S.A.

d Division of Biological Sciences and School of Applied and Engineering Physics, Cornell University, Ithaca, N.Y. 14850, U.S.A.

Abstract:Reaction center particles isolated from carotenoidless mutant Rhodopseudomonas spheroides were studied with the aim of determining the pigment composition and the molar extinction coefficients.

Two independent sets of measurements using a variety of methods show that a sample with A800 nm = 1.00 contains 20.8 ± 0.8 μM tetrapyrrole and that the ratio of bacteriochlorophyll to bacteriopheophytin is 2:1.

Measurements were made of the absorption changes attending the oxidation of cytochrome c coupled to reduction of the photooxidized primary electron donor in reaction centers, using laser flash excitation. The ratio of the absorption change at 865 nm (due to the bleaching of P870) to that at 550 nm (oxidation of cytochrome) was found to be 5.77.

These results, combined with other data, yield a pigment composition of 4 bacteriochlorophyll and 2 bacteriopheophytin molecules in a reaction center. Based on this choice, extinction coefficients are determined for the 802- and 865-nm bands: 802 nm = 288 (± 14) mM−1 · cm−1 and 865 nm = 128 (± 6) mM−1 · cm−1. For reversible bleaching of the 865-nm band, Δred - ox865nm = 112 (± 6) mM−1 · cm−1 (referred to the molarity of reaction centers). Earlier reported values of photochemical quantum efficiency are recomputed, and the revised values are shown to be compatible with those obtained from measurements of fluorescence transients.

Keywords:
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