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分离异形胞中光合电子传递的闪光光谱表征

Flash spectroscopic characterization of photosynthetic electron transport in isolated heterocysts.

作者信息

Houchins J P, Hind G

出版信息

Arch Biochem Biophys. 1983 Jul 1;224(1):272-82. doi: 10.1016/0003-9861(83)90210-2.

Abstract

Electron transport was studied in heterocysts of the filamentous cyanobacterium Anabaena 7120 using spectral and kinetic analysis of absorbance transients elicited by single turnover flashes. Consistent photosynthetic turnovers were observed only in the presence of an exogenous source of reductant; therefore measurements were routinely made under a gas phase containing H2. Prominent absorbance changes corresponding to the oxidation of cytochrome c (554 nm) and the reduction of cytochrome b563 (563 nm) were observed. Under the most reducing conditions (99% H2/1% O2) cytochrome b563 was partially reduced between flashes in a slow, dark reaction. At 10-15% O2, the slow, dark reduction of cytochrome b563 was eliminated. Cytochrome turnover ceased entirely at high O2 concentrations (30%) but was restored by the addition of 25 microM KCN, demonstrating an interaction between the photosynthetic and respiratory electron transfer chains. Strobilurin A slowed the re-reduction of cytochrome c and eliminated the appearance of reduced cytochrome b563 by blocking electron transfer between reduced plastoquinone and the cytochrome b/f complex. Inhibition at a second site was apparent with 2-(n-heptyl)-4-hydroxyquinoline N-oxide, which blocked the reoxidation of cytochrome b563 but had little effect on cytochrome c relaxation. In uncoupled heterocysts, the rates of cytochrome c re-reduction and cytochrome b563 reduction were equal. Additional unassigned absorbance changes at 475 nm, 515 nm, and 572 nm were partially characterized. No absorbance change corresponding to an electrochromic shift was observed.

摘要

利用单次周转闪光引发的吸光度瞬变的光谱和动力学分析,对丝状蓝细菌鱼腥藻7120异形胞中的电子传递进行了研究。仅在外源还原剂存在的情况下观察到一致的光合周转;因此,测量通常在含有H2的气相下进行。观察到与细胞色素c(554nm)氧化和细胞色素b563(563nm)还原相对应的显著吸光度变化。在最强还原条件下(99%H2/1%O2),细胞色素b563在闪光之间通过缓慢的暗反应部分还原。在10-15%O2时,细胞色素b563的缓慢暗还原被消除。在高O2浓度(30%)下,细胞色素周转完全停止,但通过添加25μM KCN得以恢复,这表明光合和呼吸电子传递链之间存在相互作用。嗜球果伞素A通过阻断还原质体醌和细胞色素b/f复合物之间的电子传递,减缓了细胞色素c的再还原,并消除了还原型细胞色素b563的出现。2-(正庚基)-4-羟基喹啉N-氧化物在第二个位点的抑制作用明显,它阻断了细胞色素b563的再氧化,但对细胞色素c的弛豫影响很小。在解偶联的异形胞中,细胞色素c再还原和细胞色素b563还原的速率相等。对475nm、515nm和572nm处其他未确定的吸光度变化进行了部分表征。未观察到与电致变色位移相对应的吸光度变化。

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