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本文引用的文献

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Redox-modulation of chloroplast enzymes : a common principle for individual control.叶绿体酶的氧化还原调节:个体控制的共同原则。
Plant Physiol. 1991 May;96(1):1-3. doi: 10.1104/pp.96.1.1.
2
On the light dependence of Fatty Acid synthesis in spinach chloroplasts.菠菜叶绿体中脂肪酸合成的光依赖性研究
Plant Physiol. 1983 Sep;73(1):11-5. doi: 10.1104/pp.73.1.11.
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Regulation of Plant Acetyl-CoA Carboxylase by Adenylate Nucleotides.腺嘌呤核苷酸对植物乙酰辅酶 A 羧化酶的调节。
Plant Physiol. 1983 May;72(1):50-5. doi: 10.1104/pp.72.1.50.
4
Activation of Chloroplast NADP-linked Glyceraldehyde-3-Phosphate Dehydrogenase by the Ferredoxin/Thioredoxin System.铁氧还蛋白/硫氧还蛋白系统对叶绿体NADP连接的甘油醛-3-磷酸脱氢酶的激活作用。
Plant Physiol. 1978 Apr;61(4):669-71. doi: 10.1104/pp.61.4.669.
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The Compartmentation of Acetyl-Coenzyme A Carboxylase in Plants.植物中乙酰辅酶A羧化酶的区室化
Plant Physiol. 1995 Jun;108(2):445-449. doi: 10.1104/pp.108.2.445.
6
The pea chloroplast membrane-associated protein, IEP96, is a subunit of acetyl-CoA carboxylase.豌豆叶绿体膜相关蛋白IEP96是乙酰辅酶A羧化酶的一个亚基。
Plant J. 1996 Aug;10(2):261-8. doi: 10.1046/j.1365-313x.1996.10020261.x.
7
Acetyl-CoA carboxylase in higher plants: most plants other than gramineae have both the prokaryotic and the eukaryotic forms of this enzyme.高等植物中的乙酰辅酶A羧化酶:除禾本科植物外,大多数植物都有这种酶的原核和真核形式。
Plant Cell Physiol. 1996 Mar;37(2):117-22. doi: 10.1093/oxfordjournals.pcp.a028920.
8
Intron position as an evolutionary marker of thioredoxins and thioredoxin domains.内含子位置作为硫氧还蛋白和硫氧还蛋白结构域的进化标记。
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Light-regulated translation of chloroplast messenger RNAs through redox potential.通过氧化还原电位对叶绿体信使核糖核酸进行光调节翻译。
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光与脂肪酸合成之间的联系:硫氧还蛋白介导的质体乙酰辅酶A羧化酶的还原激活

Link between light and fatty acid synthesis: thioredoxin-linked reductive activation of plastidic acetyl-CoA carboxylase.

作者信息

Sasaki Y, Kozaki A, Hatano M

机构信息

Laboratory of Plant Molecular Biology, Graduate School of Bioagricultural Sciences, Nagoya University, Nagoya 464-01, Japan.

出版信息

Proc Natl Acad Sci U S A. 1997 Sep 30;94(20):11096-101. doi: 10.1073/pnas.94.20.11096.

DOI:10.1073/pnas.94.20.11096
PMID:9380765
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC23628/
Abstract

Fatty acid synthesis in chloroplasts is regulated by light. The synthesis of malonyl-CoA, which is catalyzed by acetyl-CoA carboxylase (ACCase) and is the first committed step, is modulated by light/dark. Plants have ACCase in plastids and the cytosol. To determine the possible involvement of a redox cascade in light/dark modulation of ACCase, the effect of DTT, a known reductant of S-S bonds, was examined in vitro for the partially purified ACCase from pea plant. Only the plastidic ACCase was activated by DTT. This enzyme was activated in vitro more efficiently by reduced thioredoxin, which is a transducer of redox potential during illumination, than by DTT alone. Chloroplast thioredoxin-f activated the enzyme more efficiently than thioredoxin-m. The ACCase also was activated by thioredoxin reduced enzymatically with NADPH and NADP-thioredoxin reductase. These findings suggest that the reduction of ACCase is needed for activation of the enzyme, and a redox potential generated by photosynthesis is involved in its activation through thioredoxin as for enzymes of the reductive pentose phosphate cycle. The catalytic activity of ACCase was maximum at pH 8 and 2-5 mM Mg2+, indicating that light-produced changes in stromal pH and Mg2+ concentration modulate ACCase activity. These results suggest that light directly modulates a regulatory site of plastidic prokaryotic form of ACCase via a signal transduction pathway of a redox cascade and indirectly modulates its catalytic activity via stromal pH and Mg2+ concentration. A redox cascade is likely to link between light and fatty acid synthesis, resulting in coordination of fatty acid synthesis with photosynthesis.

摘要

叶绿体中的脂肪酸合成受光调控。丙二酰辅酶A的合成由乙酰辅酶A羧化酶(ACCase)催化,是脂肪酸合成的首个关键步骤,其受光/暗条件的调节。植物的质体和细胞质中均存在ACCase。为确定氧化还原级联反应是否可能参与ACCase的光/暗调节,研究人员在体外检测了已知的S-S键还原剂二硫苏糖醇(DTT)对豌豆植株部分纯化的ACCase的影响。结果发现,只有质体ACCase能被DTT激活。相较于单独使用DTT,在体外,该酶能更有效地被还原型硫氧还蛋白激活,硫氧还蛋白是光照期间氧化还原电位的转导因子。叶绿体硫氧还蛋白-f比硫氧还蛋白-m能更有效地激活该酶。ACCase还能被用NADPH和NADP-硫氧还蛋白还原酶酶促还原的硫氧还蛋白激活。这些发现表明,ACCase的激活需要其被还原,并且光合作用产生的氧化还原电位通过硫氧还蛋白参与其激活过程,就像参与还原性戊糖磷酸循环的酶一样。ACCase的催化活性在pH 8和2 - 5 mM Mg2+时最高,这表明光照引起的基质pH值和Mg2+浓度变化会调节ACCase的活性。这些结果表明,光通过氧化还原级联反应的信号转导途径直接调节质体原核形式ACCase的调节位点,并通过基质pH值和Mg2+浓度间接调节其催化活性。氧化还原级联反应可能在光和脂肪酸合成之间建立联系,从而使脂肪酸合成与光合作用相协调。