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[在铁氧化还原蛋白存在的情况下,由光系统I催化的循环和非循环电子传递过程中分离叶绿体对波顿的摄取]

[Porton uptake by isolated chloroplasts during cyclic and non-cyclic electron transport catalyzed by photosystem I in the presence of ferredoxin].

作者信息

Ivanov B N, Tikhonova L N

出版信息

Biokhimiia. 1979 Jun;44(6):983-9.

PMID:88967
Abstract

Proton uptake by isolated chloroplasts during cyclic electron transport in the presence of ferredoxin and under NADP+ reduction from the ascorbate--TMPD donor pair under anaerobic conditions was studied. It was found that during cyclic transport the proton uptake is less intensive than under NADP+ reduction. In the presence of ATP the proton uptake is increased in the first case and is decreased in the second one. During cyclic transport in the presence of gramicidin D the proton uptake is completely suppressed and under NADP+ reduction is decreased down to 0,08--0,09 mk equiv H+ per mg of chlorophyll, irrespective of ferredoxin or NADP+ concentrations. The role of ferredoxin NADP+ reductase in a proton uptake by thylakoids is discussed.

摘要

研究了在厌氧条件下,在存在铁氧还蛋白以及从抗坏血酸 - TMPD供体对进行NADP⁺还原的情况下,分离的叶绿体在循环电子传递过程中的质子摄取。发现循环传递过程中的质子摄取比NADP⁺还原时的强度要小。在存在ATP的情况下,第一种情况下质子摄取增加,第二种情况下质子摄取减少。在存在短杆菌肽D的情况下进行循环传递时,质子摄取被完全抑制,而在NADP⁺还原时,无论铁氧还蛋白或NADP⁺浓度如何,质子摄取都降至每毫克叶绿素0.08 - 0.09毫当量H⁺。讨论了铁氧还蛋白NADP⁺还原酶在类囊体质子摄取中的作用。

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