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通过闪光光谱法研究红螺菌全细胞光合作用中三种细胞色素的功能。两种反应中心的证据。

Function of three cytochromes in photosynthesis of whole cells of Rhodospirillum rubrum as studied by flash spectroscopy. Evidence for two types of reaction center.

作者信息

van Grondelle R, Duysens L N, van der Wal H N

出版信息

Biochim Biophys Acta. 1976 Nov 9;449(2):169-87. doi: 10.1016/0005-2728(76)90131-6.

DOI:10.1016/0005-2728(76)90131-6
PMID:186114
Abstract
  1. Changes in the absorption spectrum induced by 10-mus flashes and continuous light of various intensities were studied in whole cells of Rhodospirillum rubrum in the presence and absence of 2-n-heptyl-4-hydroxyquinoline-N-oxide(HOQNO) and antimycin A. 2. Three cytochromes, c-420 (cytochrome c2), c-560 (cytochrome b) and c-428 were photoactive and gamma and alpha peaks at 420 and 550, 428 and 560, and 428 and 551 nm, respectively; they were photooxidized following the flash with half times of 0.3, 0.6 and 7 ms in the approximate ratios of 1/100, 1/300 and 1/1000 (cytochrome oxidized/antenna chlorophyll) and became reduced with half times of 12 ms, 60 ms and 0.7 s, respectively. c-428 and c-560 have not been distinguished before. 3. From a detailed analysis of the kinetics of P+ (oxidized reaction center chlorophyll) and the cytochromes, we conclude that 5% of the P+ (P2+) oxidizes c-428, whereas the remaining 95% of P+ (P1+) oxidizes c-420. At actinic light intensities low enough to keep c-420 fully reduced, approx. 4-5% of P becomes oxidized, accompanied by all c-428. The P2+ -P2 difference spectrum induced by this weak light is, when corrected for a shift to longer wavelengths of the bacteriochlorophyll absorption band at 878 nm, identical to the difference spectrum caused by the photooxidation of the remaining P1. At low flash intensity, c-428 becomes preferentially photooxidized, which suggests that the reaction centers where c-428 functions as a secondary donor contain much more antenna pigments compared to the centers where c-420 serves this purpose. 4. c+-420 is reduced in a competitive way by reduced c-560 (t 1/2=7 ms), and by an electron donor pool, (t 1/2=15 ms). HOQNO inhibits both pathways; antimycin A only the first. In the presence of HOQNO, c-560 is in the oxidized state in the dark, and is reduced in a light flash (t 1/2=100 ms), indicating that c-560 acts in a cyclic electron transport chain connected to P1. 5. The ratio of numbers of molecules P1 and antenna bacteriochlorophyll, transferring excitation energy to P1, is P1/bacteriochlorophyll1=1/30 P2: bacteriochlorophyll2=1/300; c-420/P1=1:2; c-560/P1=1/6; C-428/P2=1/1; bacteriochlorophyll2=7:3. If P2 is oxidized, excitation energy is transferred from bacteriochlorophyll2 to bacteriochlorophyll1.
摘要
  1. 在存在和不存在2 - 正庚基 - 4 - 羟基喹啉 - N - 氧化物(HOQNO)和抗霉素A的情况下,研究了10微秒闪光和各种强度的连续光在深红红螺菌全细胞中诱导的吸收光谱变化。2. 三种细胞色素,c - 420(细胞色素c2)、c - 560(细胞色素b)和c - 428具有光活性,其γ峰和α峰分别位于420和550、428和560以及428和551纳米处;闪光后它们被光氧化,半衰期分别为0.3、0.6和7毫秒,氧化细胞色素/天线叶绿素的近似比例分别为1/100、1/300和1/1000,然后分别以12毫秒、60毫秒和0.7秒的半衰期还原。c - 428和c - 560以前未被区分出来。3. 通过对P +(氧化态反应中心叶绿素)和细胞色素动力学的详细分析,我们得出结论,5%的P +(P2 +)氧化c - 428,而其余95%的P +(P1 +)氧化c - 420。在光化光强度低到足以使c - 420完全还原时,约4 - 5%的P被氧化,同时所有c - 428也被氧化。经校正878纳米处细菌叶绿素吸收带向更长波长的移动后,这种弱光诱导的P2 + - P2差分光谱与剩余P1光氧化引起的差分光谱相同。在低闪光强度下,c - 428优先被光氧化,这表明与以c - 420作为二级供体的反应中心相比,c - 428作为二级供体的反应中心含有更多的天线色素。4. 还原态的c - 560(半衰期 = 7毫秒)和一个电子供体池(半衰期 = 15毫秒)以竞争方式使c + - 420还原。HOQNO抑制这两条途径;抗霉素A仅抑制第一条途径。在存在HOQNO的情况下,c - 560在黑暗中处于氧化态,在闪光中被还原(半衰期 = 100毫秒),这表明c - 560在与P1相连的循环电子传递链中起作用。5. 向P1传递激发能的P1分子数与天线细菌叶绿素数之比为P1/细菌叶绿素1 = 1/30,P2:细菌叶绿素2 = 1/300;c - 420/P1 = 1:2;c - 560/P1 = 1/6;C - 428/P2 = 1/1;细菌叶绿素2 = 7:3。如果P2被氧化,激发能从细菌叶绿素2转移到细菌叶绿素1。

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