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Plant Physiol. 1969 Jan;44(1):126-34. doi: 10.1104/pp.44.1.126.
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The respiratory chain of plant mitochondria. I. Electron transport between succinate and oxygen in skunk cabbage mitochondria.植物线粒体的呼吸链。I. 天南星科植物线粒体中琥珀酸与氧之间的电子传递。
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The respiratory chain of plant mitochondria. IV. Oxidation rates of the respiratory carriers of mung bean mitochondria in the presence of cyanide.植物线粒体的呼吸链。IV. 氰化物存在下绿豆线粒体呼吸载体的氧化速率。
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The Respiratory Chain of Plant Mitochondria: XVII. Flavoprotein-Cytochrome b(562) Interaction in Antimycin-treated Skunk Cabbage Mitochondria.植物线粒体的呼吸链:十七。抗霉素处理的臭菘线粒体中黄素蛋白 - 细胞色素b(562)的相互作用
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The Respiratory Chain of Plant Mitochondria: VII. Kinetics of Flavoprotein Oxidation in Skunk Cabbage Mitochondria.植物线粒体的呼吸链:VII. 臭菘线粒体中黄素蛋白氧化的动力学
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The Respiratory Chain of Plant Mitochondria: VIII. Reduction Kinetics of the Respiratory Chain Carriers of Mung Bean Mitochondria with Reduced Nicotinamide Adenine Dinucleotide.植物线粒体的呼吸链:VIII. 用还原型烟酰胺腺嘌呤二核苷酸对绿豆线粒体呼吸链载体的还原动力学
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The Respiratory Chain of Plant Mitochondria: XII. Some Aspects of the Energy-linked Reverse Electron Transport from the Cytochromes c to the Cytochromes b in Mung Bean Mitochondria.植物线粒体的呼吸链:十二。绿豆线粒体中从细胞色素c到细胞色素b的能量偶联反向电子传递的某些方面。
Plant Physiol. 1972 Mar;49(3):314-22. doi: 10.1104/pp.49.3.314.
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The respiratory chain components of higher plant mitochondria.高等植物线粒体的呼吸链成分。
Plant Physiol. 1968 May;43(5):756-66. doi: 10.1104/pp.43.5.756.
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The respiratory chain of plant mitochondria: x. Oxidation-reduction potentials of the flavoproteins of skunk cabbage mitochondria.植物线粒体的呼吸链:十. 臭菘线粒体黄素蛋白的氧化还原电位。
Plant Physiol. 1971 Oct;48(4):493-7. doi: 10.1104/pp.48.4.493.

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Organelle Studies and Proteome Analyses of Mitochondria and Plastids Fractions from the Diatom Thalassiosira pseudonana.细胞器研究与蛋白组分析的线粒体和质体分数从硅藻假鱼腥藻。
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The Respiratory Chain of Plant Mitochondria: XII. Some Aspects of the Energy-linked Reverse Electron Transport from the Cytochromes c to the Cytochromes b in Mung Bean Mitochondria.植物线粒体的呼吸链:十二。绿豆线粒体中从细胞色素c到细胞色素b的能量偶联反向电子传递的某些方面。
Plant Physiol. 1972 Mar;49(3):314-22. doi: 10.1104/pp.49.3.314.
8
The Respiratory Chain of Plant Mitochondria: XI. Electron Transport from Succinate to Endogenous Pyridine Nucleotide in Mung Bean Mitochondria.植物线粒体的呼吸链:XI. 绿豆线粒体中从琥珀酸到内源性吡啶核苷酸的电子传递。
Plant Physiol. 1971 Dec;48(6):694-701. doi: 10.1104/pp.48.6.694.
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The respiratory chain of plant mitochondria: x. Oxidation-reduction potentials of the flavoproteins of skunk cabbage mitochondria.植物线粒体的呼吸链:十. 臭菘线粒体黄素蛋白的氧化还原电位。
Plant Physiol. 1971 Oct;48(4):493-7. doi: 10.1104/pp.48.4.493.
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The effect of calcium and inhibitors on corn mitochondrial respiration.钙和抑制剂对玉米线粒体呼吸的影响。
Plant Physiol. 1971 Jun;47(6):832-5. doi: 10.1104/pp.47.6.832.

本文引用的文献

1
Properties of Higher Plant Mitochondria. I. Isolation and Some Characteristics of Tightly-coupled Mitochondria from Dark-grown Mung Bean Hypocotyls.高等植物线粒体的特性。I. 黑暗生长的绿豆下胚轴紧密偶联线粒体的分离及某些特性
Plant Physiol. 1967 Jan;42(1):67-75. doi: 10.1104/pp.42.1.67.
2
Oxidative Phosphorylation and Functional Cytochromes in Skunk Cabbage Mitochondria.臭菘线粒体中的氧化磷酸化与功能性细胞色素
Plant Physiol. 1958 Jan;33(1):27-32. doi: 10.1104/pp.33.1.27.
3
A fluorimetric method for the quantitative microanalysis of adenine and pyridine nucleotides.一种用于腺嘌呤和吡啶核苷酸定量微量分析的荧光法。
Anal Biochem. 1962 May;3:369-82. doi: 10.1016/0003-2697(62)90065-9.
4
Localization of interaction sites in multi-component transfer systems: theorems derived from analogues.多组分转移系统中相互作用位点的定位:从类似物推导的定理
Nature. 1958 Nov 1;182(4644):1190-3. doi: 10.1038/1821190a0.
5
The respiratory chain and oxidative phosphorylation.呼吸链与氧化磷酸化。
Adv Enzymol Relat Subj Biochem. 1956;17:65-134. doi: 10.1002/9780470122624.ch2.
6
Respiratory enzymes in oxidative phosphorylation. III. The steady state.氧化磷酸化中的呼吸酶。III. 稳态
J Biol Chem. 1955 Nov;217(1):409-27.
7
Electron transport carriers in plant mitochondria.植物线粒体中的电子传递载体。
Nature. 1967 May 6;214(5088):616-7. doi: 10.1038/214616a0.
8
The respiratory chain of plant mitochondria. I. Electron transport between succinate and oxygen in skunk cabbage mitochondria.植物线粒体的呼吸链。I. 天南星科植物线粒体中琥珀酸与氧之间的电子传递。
Plant Physiol. 1969 Jan;44(1):115-25. doi: 10.1104/pp.44.1.115.
9
Flavoproteins of the mitochondrial respiratory chain.线粒体呼吸链的黄素蛋白
Proc Natl Acad Sci U S A. 1967 May;57(5):1498-505. doi: 10.1073/pnas.57.5.1498.
10
Azide inhibition of mitochondrial electron transport. I. The aerobic steady state of succinate oxidation.叠氮化物对线粒体电子传递的抑制作用。I. 琥珀酸氧化的需氧稳态
Biochim Biophys Acta. 1967 May 9;131(3):421-30. doi: 10.1016/0005-2728(67)90002-3.

植物线粒体的呼吸链。II. 臭菘线粒体中的氧化磷酸化作用。

The respiratory chain of plant mitochondria. II. Oxidative phosphorylation in skunk cabbage mitochondria.

作者信息

Storey B T, Bahr J T

出版信息

Plant Physiol. 1969 Jan;44(1):126-34. doi: 10.1104/pp.44.1.126.

DOI:10.1104/pp.44.1.126
PMID:5775847
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC396049/
Abstract

Mitochondria were prepared from the spadices of skunk cabbage (Symplocarpus foetidus) whose respiratory rate with succinate and malate showed 15% to 30% sensitivity to cyanide inhibition, and which showed respiratory control by added ADP. The observed respiratory control ratios ranged from 1.1 to 1.4. The change in pH of the mitochondrial suspension was recorded simultaneously with oxygen uptake: alkalinization of the medium, expected for phosphorylation of ADP, coincided with the period of acceleration in oxygen uptake caused by addition of an ADP aliquot. The ADP/O ratios obtained were 1.3 for succinate and 1.9 for malate. In the presence of 0.3 mm cyanide, the ADP/O ratio for succinate was zero, while that for malate was 0.7. These results are consistent with the existence of an alternate oxidase which interacts with the flavoprotein and pyridine nucleotide components of the respiratory chain and which, in the presence of cyanide, allows the first phosphorylation site to function with an efficiency of about 70%. In the absence of respiratory inhibitors, the efficiency of each phosphorylation site is also about 70%. This result implies that diversion of reducing equivalents through the alternate oxidase, thereby bypassing the 2 phosphorylation sites associated with the cytochrome components of these mitochondria, occurs to a negligible extent during the oxidative phosphorylation of ADP or State 3. Addition of ADP or uncoupler to skunk cabbage mitochondria respiring in the controlled state or State 4, results in reduction of cytochrome c and the oxidation of the cytochromes b, ubiquinone and pyridine nucleotide. A site of interaction of ADP with the respiratory chain between cytochromes b and cytochrome c is thereby identified by means of the crossover theorem. Flavoprotein measured by fluorescence is also oxidized upon addition of ADP or uncoupler, but flavoprotein measured by optical absorbance changes becomes more reduced under these conditions. Depletion of the mitochondria by pretreatment with ADP and uncoupler prevents reduction of most of the fluorescent flavoprotein by succinate. These results indicate that skunk cabbage mitochondria contain both high and low potential flavo-proteins characterized by different fluorescence/absorbance ratios similar to those demonstrated to be part of the respiratory chain in mitochondria from animal tissues.

摘要

线粒体取自臭菘(Symplocarpus foetidus)的佛焰花序,其以琥珀酸和苹果酸为底物时的呼吸速率对氰化物抑制表现出15%至30%的敏感性,且添加ADP后呈现呼吸控制。观察到的呼吸控制率在1.1至1.4之间。线粒体悬浮液的pH变化与氧气摄取同时记录:ADP磷酸化预期的培养基碱化与添加一份ADP导致的氧气摄取加速期一致。琥珀酸的ADP/O比值为1.3,苹果酸的为1.9。在0.3 mM氰化物存在下,琥珀酸的ADP/O比值为零,而苹果酸的为0.7。这些结果与交替氧化酶的存在一致,该酶与呼吸链的黄素蛋白和吡啶核苷酸成分相互作用,并且在氰化物存在时,使第一个磷酸化位点以约70%的效率发挥作用。在没有呼吸抑制剂的情况下,每个磷酸化位点的效率也约为70%。这一结果意味着,在ADP氧化磷酸化或状态3期间,通过交替氧化酶转移还原当量从而绕过与这些线粒体细胞色素成分相关的2个磷酸化位点的情况发生的程度可忽略不计。向处于控制状态或状态4呼吸的臭菘线粒体中添加ADP或解偶联剂,会导致细胞色素c还原以及细胞色素b、泛醌和吡啶核苷酸氧化。由此通过交叉定理确定了ADP在细胞色素b和细胞色素c之间与呼吸链相互作用的位点。添加ADP或解偶联剂时,通过荧光测量的黄素蛋白也会被氧化,但在这些条件下,通过光吸收变化测量的黄素蛋白会变得更加还原。用ADP和解偶联剂预处理使线粒体耗尽,可防止琥珀酸使大部分荧光黄素蛋白还原。这些结果表明,臭菘线粒体含有高电位和低电位的黄素蛋白,其特征在于具有与动物组织线粒体中呼吸链一部分所显示的不同荧光/吸光率。