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本文引用的文献

1
Characterization of the transport of oxaloacetate by pea leaf mitochondria.研究豌豆叶线粒体中草酰乙酸转运的特性。
Plant Physiol. 1984 Oct;76(2):409-13. doi: 10.1104/pp.76.2.409.
2
Provisions of reductant for the hydroxypyruvate to glycerate conversion in leaf peroxisomes : a critical evaluation of the proposed malate/aspartate shuttle.叶片过氧化物酶体中羟基丙酮酸向甘油酸转化的还原剂供应:对所提出的苹果酸/天冬氨酸穿梭机制的批判性评估
Plant Physiol. 1983 Jul;72(3):728-34. doi: 10.1104/pp.72.3.728.
3
Properties of substantially chlorophyll-free pea leaf mitochondria prepared by sucrose density gradient separation.用蔗糖密度梯度分离法制备的基本上不含叶绿素的豌豆叶线粒体的性质。
Plant Physiol. 1983 Mar;71(3):627-34. doi: 10.1104/pp.71.3.627.
4
Glycine metabolism and oxalacetate transport by pea leaf mitochondria.豌豆叶线粒体的甘氨酸代谢和草酰乙酸转运。
Plant Physiol. 1981 Aug;68(2):425-9. doi: 10.1104/pp.68.2.425.
5
Role of Glutamate-oxaloacetate Transaminase and Malate Dehydrogenase in the Regeneration of NAD for Glycine Oxidation by Spinach leaf Mitochondria.谷氨酸-草酰乙酸转氨酶和苹果酸脱氢酶在菠菜叶线粒体中再生 NAD 以氧化甘氨酸中的作用。
Plant Physiol. 1981 Mar;67(3):467-9. doi: 10.1104/pp.67.3.467.
6
Oxygen exchange in leaves in the light.叶片在光照下的氧气交换
Plant Physiol. 1980 Aug;66(2):302-7. doi: 10.1104/pp.66.2.302.
7
Malate Decarboxylation by Kalanchoë daigremontiana Mitochondria and Its Role in Crassulacean Acid Metabolism.大戟科卡尔兰乔叶线粒体的苹果酸脱羧作用及其在景天酸代谢中的作用。
Plant Physiol. 1980 Apr;65(4):675-9. doi: 10.1104/pp.65.4.675.
8
Increase in linolenic Acid is not a prerequisite for development of freezing tolerance in wheat.亚麻酸含量增加不是小麦抗冻性发育的前提条件。
Plant Physiol. 1979 Jan;63(1):5-8. doi: 10.1104/pp.63.1.5.
9
Isolation and oxidative properties of intact mitochondria isolated from spinach leaves.从菠菜叶中分离出完整线粒体的分离和氧化特性。
Plant Physiol. 1977 Oct;60(4):625-8. doi: 10.1104/pp.60.4.625.
10
Interactions between Mitochondria and Chloroplasts in Cells: I. Action of Cyanide and of 3-(3,4-Dichlorophenyl)-1,1-dimethylurea on the Spore of Funaria hygrometrica.细胞中线粒体和叶绿体的相互作用:I. 氰化物和 3-(3,4-二氯苯基)-1,1-二甲基脲对葫芦藓孢子的作用。
Plant Physiol. 1976 Mar;57(3):400-2. doi: 10.1104/pp.57.3.400.

光呼吸氢穿梭。邻苯二甲酸的合成及其在豌豆(Pisum sativum)叶片线粒体中苹果酸/天冬氨酸穿梭特性表征中的应用。

The photorespiratory hydrogen shuttle. Synthesis of phthalonic acid and its use in the characterization of the malate/aspartate shuttle in pea (Pisum sativum) leaf mitochondria.

作者信息

Dry I B, Dimitriadis E, Ward A D, Wiskich J T

机构信息

Department of Botany, University of Adelaide, Australia.

出版信息

Biochem J. 1987 Aug 1;245(3):669-75. doi: 10.1042/bj2450669.

DOI:10.1042/bj2450669
PMID:3663185
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1148184/
Abstract

A method is presented for the preparation of pure phthalonic acid (PTA) in high yields. This PTA was used to determine the capacity of the malate/aspartate shuttle in pea (Pisum sativum) leaf mitochondria. The inhibition of glycine-dependent O2 uptake in the combined presence of 5 mM-aspartate and 5 mM-2-oxoglutarate (2-OG) was decreased by 55 +/- 22% (n = 13) in washed and 50 +/- 2% (n = 11) in purified mitochondria by 0.23 mM-PTA. This concentration of PTA had no effect on the oxidation of 5 mM-2-OG, suggesting that part of the observed inhibition of O2 uptake in the presence of aspartate and 2-OG was due to the production of oxaloacetate (OAA) by aspartate aminotransferase external to the mitochondrial inner membrane. Levels of external aspartate aminotransferase were estimated to be 24 +/- 1% (n = 4) and 13 +/- 1% (n = 4) of the total mitochondrial activity in washed and purified mitochondria respectively. Malate/aspartate-shuttle activity was estimated directly by measuring rates of malate efflux from isolated mitochondria and was found to match estimates of shuttle activity based on the PTA-insensitive inhibition of O2 uptake. Comparisons of malate/aspartate- and malate/OAA-shuttle activities indicated potentially similar rates of NADH export from pea leaf mitochondria under conditions in vivo. These extrapolated to whole-tissue rates of 5-11 mumol of NADH.h-1.mg of chlorophyll-1. The potential role of the malate/aspartate shuttle in the support of photorespiratory glycine oxidation in leaf tissue is discussed.

摘要

本文介绍了一种高产制备纯邻苯二甲酸(PTA)的方法。该PTA用于测定豌豆(Pisum sativum)叶片线粒体中苹果酸/天冬氨酸穿梭的能力。在5 mM-天冬氨酸和5 mM-2-氧代戊二酸(2-OG)共同存在的情况下,0.23 mM-PTA使洗涤后的线粒体中甘氨酸依赖性O2摄取的抑制率降低了55±22%(n = 13),使纯化后的线粒体中降低了50±2%(n = 11)。该浓度的PTA对5 mM-2-OG的氧化没有影响,这表明在天冬氨酸和2-OG存在下观察到的O2摄取抑制部分是由于线粒体内膜外的天冬氨酸转氨酶产生草酰乙酸(OAA)所致。估计洗涤后的线粒体和纯化后的线粒体中外源天冬氨酸转氨酶的水平分别占线粒体总活性的24±1%(n = 4)和13±1%(n = 4)。通过测量分离线粒体中苹果酸外流速率直接估算苹果酸/天冬氨酸穿梭活性,发现其与基于PTA不敏感的O2摄取抑制的穿梭活性估算值相符。苹果酸/天冬氨酸穿梭与苹果酸/OAA穿梭活性的比较表明,在体内条件下,豌豆叶片线粒体中NADH的输出速率可能相似。这些推算出整个组织中NADH的速率为5-11 μmol·h-1·mg叶绿素-1。本文还讨论了苹果酸/天冬氨酸穿梭在支持叶片组织中光呼吸甘氨酸氧化方面的潜在作用。