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Reversal of Copper Inhibition in Chloroplast Reactions by Manganese

机译:锰逆转叶绿体反应中铜的抑制作用

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摘要

In the Mehler reaction, a Hill reaction utilizing molecular oxygen as the electron acceptor, rates of net oxygen uptake are stimulated by added manganous ions. Both whole cell photosynthesis and the Mehler reaction are inhibited by copper. Copper inhibition of the Mehler reaction can be reversed by manganese salts. Glutathione. which alone has no effect on Mehler reaction rates, enhances the effect of manganese in reversing copper inhibition. The effects of added Cu2+, Cu2+ and Mn2+, or Cu2+, Mn2+, and glutathione exhibit no induction phenomena when measured manometrically. Furthermore, the order of addition of these factors is unimportant: final rates are dependent only on the composition of reaction mixtures. Compared to the Mehler reaction, conventional Hill reactions are less sensitive to copper poisoning, while certain chloroplast mediated photoxidations (e.g. the photoxidation of diketogulonic acid) are far more sensitive. In all of the chloroplast mediated photoreactions tested, manganese is effective in reducing the sensitivity to copper poisoning.
机译:在Mehler反应中,利用分子氧作为电子受体的Hill反应中,净锰的吸收速率受到添加的锰离子的刺激。铜抑制全细胞的光合作用和Mehler反应。铜盐对梅勒反应的抑制作用可以通过锰盐逆转。谷胱甘肽。单单对Mehler反应速率没有影响,增强了锰在逆转铜抑制方面的作用。添加Cu 2 + ,Cu 2 + 和Mn 2 + 或Cu 2 + ,Mn的影响 2 + 和谷胱甘肽在测压时没有诱导现象。此外,这些因素的添加顺序并不重要:最终速率仅取决于反应混合物的组成。与Mehler反应相比,常规的Hill反应对铜中毒的敏感性较低,而某些叶绿体介导的光氧化作用(例如,二酮古洛糖酸的光氧化作用)要敏感得多。在所有测试的叶绿体介导的光反应中,锰可有效降低对铜中毒的敏感性。

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