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槲皮素与叶绿体ATP酶复合体的相互作用。

Quercetin interaction with the chloroplast ATPase complex.

作者信息

Shoshan V, Shahak Y, Shavit N

出版信息

Biochim Biophys Acta. 1980 Jul 8;591(2):421-33. doi: 10.1016/0005-2728(80)90173-5.

Abstract
  1. Quercetin, a flavonoid which acts as an energy transfer inhibitor in photophosphorylation is shown to inhibit the P-ATP exchange activity of membrane-bound CF1 and the ATPase activity of isolated CF1. Quercetin, affects also the proton uptake in chloroplasts in a manner similar to that of dicyclohexylcarbodiimide. 2. The light-dependent proton uptake in EDTA-treated chloroplasts is stimulated by quercetin. In untreated chloroplasts quercetin has a dual effect: it enhances at pH above 7.5 while at lower pH values it decreases the extent of H+ uptake. Similar effects were obtained with dicyclohexylcarbodiimide. 3. Like quercetin, dicyclohexylcarbodiimide was also found to inhibit the ATPase activity of isolated CF1. 4. Quercetin inhibits uncoupled electron transport induced by either EDTA-treatment of chloroplasts or by addition of uncouplers. Quercetin restores H+ uptake in both types of uncoupled chloroplasts. 5. The mode of action of quercetin and dicyclohexylcarbodiimide in photophosphorylation is discussed, and interaction with both CF1 and F0 is suggested.
摘要
  1. 槲皮素是一种在光合磷酸化中作为能量转移抑制剂的类黄酮,它能抑制膜结合CF1的P-ATP交换活性和分离的CF1的ATP酶活性。槲皮素对叶绿体中质子摄取的影响方式与二环己基碳二亚胺类似。2. 槲皮素能刺激经EDTA处理的叶绿体中依赖光的质子摄取。在未经处理的叶绿体中,槲皮素具有双重作用:在pH高于7.5时增强质子摄取,而在较低pH值时则降低H⁺摄取的程度。二环己基碳二亚胺也有类似的效果。3. 与槲皮素一样,二环己基碳二亚胺也被发现能抑制分离的CF1的ATP酶活性。4. 槲皮素能抑制因EDTA处理叶绿体或添加解偶联剂而诱导的解偶联电子传递。槲皮素能恢复两种类型解偶联叶绿体中的H⁺摄取。5. 讨论了槲皮素和二环己基碳二亚胺在光合磷酸化中的作用模式,并提出了它们与CF1和F0的相互作用。

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