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[利用乙醇过氧化氢酶捕集器对光合电子传递链中梅勒反应的定位]

[Localization of the Meler's reaction with ethanol catalase trap in the chain of photosynthetic electron transport].

作者信息

Bekina R M, Lebedeva A F, Rubin B A

出版信息

Biokhimiia. 1976 May;41(5):815-21.

PMID:1030637
Abstract

The common view of photosystem I as the action site of catalase and ethanol at oxygen uptake in chloroplasts are based on indirect data on this reaction. That is why the question on Mehler reaction localization in electron transport chain with ethanolcatalase trap has been investigated anew. It has been demonstrated that oxygen uptake with catalase and ethanol does not decrease in presence of dibromothymoquinone (2,5-dibromo-3-methyl-6 isopropyl-p-benzoquinone--DBTQ) which blocks electron transfer to photosystem I at plastoquinones level. The summation of oxygen uptake activities is observed on the combined action of catalase and ethanol with any of the Mehler reagents functioning in photosystem I (methylviologen,FMN, epinephrine, ferredoxin). Catalase and ethanol in contrast to methylviologen have no effect on photooxidation rate of reduced dichlorphenolindophenol in photosystem I. The quatum yield of oxygen uptake with catalase and ethanol versus wave length of actinic light shows a distinct maximum in the photosystem II absorption area and a "red drop" in the longware area. The obtained data show that the Mehler reaction with catalase and ethanol takes place in photosystem II only.

摘要

将光系统I视为叶绿体中过氧化氢酶和乙醇在氧吸收时的作用位点这一普遍观点是基于关于该反应的间接数据。正因如此,利用乙醇 - 过氧化氢酶捕获法对梅勒反应在电子传递链中的定位问题进行了重新研究。结果表明,在二溴百里醌(2,5 - 二溴 - 3 - 甲基 - 6 - 异丙基 - 对苯醌——DBTQ)存在的情况下,过氧化氢酶和乙醇的氧吸收量并未减少,DBTQ在质体醌水平阻断电子向光系统I的传递。在过氧化氢酶和乙醇与光系统I中起作用的任何一种梅勒试剂(甲基紫精、FMN、肾上腺素、铁氧化还原蛋白)共同作用时,会观察到氧吸收活性的总和。与甲基紫精不同,过氧化氢酶和乙醇对光系统I中还原型二氯酚靛酚的光氧化速率没有影响。过氧化氢酶和乙醇的氧吸收量子产率与光化光波长的关系在光系统II吸收区域呈现出明显的最大值,而在长波区域则出现“红降”现象。所获得的数据表明,过氧化氢酶和乙醇参与的梅勒反应仅发生在光系统II中。

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