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ATP 对玉米黄质体分离体中原叶绿素酸酯光转化的影响。

The Effect of ATP on the Photoconversion of Protochlorophyllide in Isolated Etioplasts of Zea mays.

机构信息

Department of Biology, University of York, Heslington, York, Y01 5DD, England.

出版信息

Plant Physiol. 1975 Jul;56(1):113-20. doi: 10.1104/pp.56.1.113.

Abstract

The transformation of protochlorophyllide (PChle) into chlorophyllide (Chle) has been studied in isolated etioplasts from Zea mays. ATP (1.5mm) prevented the transformation of photoconvertible PChle 650 to PChle 630 in aged etioplasts. Curve analysis indicated that the ATP effect on photoconvertibility could be entirely accounted for by changes in the proportions of PChle 630 and PChle 650 and examination of the isolated pigments revealed that only unphytylated PChle could be activated for photoconversion by ATP. In etioplasts aged for 5 hours, ATP also stimulated photoconversion of PChle 630 into Chle 670. The process was temperature-sensitive and involved PChle 650 and Chle 680 as intermediates. AMP alone had no effect, but inhibited ATP retardation of PChle loss. ADP had a similar but lesser effect than ATP. The ADP response, but not the ATP response, was considerably enhanced in the presence of an ATP-generating system (phosphoenolpyruvate/pyruvate kinase). UTP, GTP, and CTP gave 40 to 50% of the ATP response with intact etioplasts. In envelope-free etioplasts, ATP gave the greatest response but the other nucleotides were now 80% as effective as ATP. After primary photoconversion, ATP stimulated resynthesis of PChle 650. It is proposed that ATP both gives the holochrome the ability to bind to the PChle molecule and enables additional association of the pigment-protein complex to form PChle 650.

摘要

已在玉米黄化质体中研究了原叶绿素酸酯(PChle)向叶绿素酸酯(Chle)的转化。在老化的质体中,1.5mm 的 ATP 可阻止光转化型 PChle650 转化为 PChle630。曲线分析表明,ATP 对光转化的影响可以完全由 PChle630 和 PChle650 的比例变化来解释,并且对分离的色素进行的检查表明,只有未植基化的 PChle 才能被 ATP 激活进行光转化。在老化 5 小时的质体中,ATP 还刺激 PChle630 向 Chle670 的光转化。该过程对温度敏感,涉及 PChle650 和 Chle680 作为中间体。单独的 AMP 没有作用,但抑制了 ATP 对 PChle 损失的延迟作用。ADP 的作用与 ATP 相似,但作用较小。ADP 的反应,而不是 ATP 的反应,在存在 ATP 生成系统(磷酸烯醇丙酮酸/丙酮酸激酶)时得到了极大的增强。UTP、GTP 和 CTP 与完整的黄化质体一起产生 40%至 50%的 ATP 反应。在无包膜的黄化质体中,ATP 产生最大的反应,但其他核苷酸的作用现在是 ATP 的 80%。在初级光转化后,ATP 刺激 PChle650 的重新合成。有人提出,ATP 使完整的叶绿素具有与 PChle 分子结合的能力,并使色素-蛋白复合物的额外结合形成 PChle650 成为可能。

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本文引用的文献

8
Rapid regeneration of protochlorophyllide(650).原叶绿素酸酯(650)的快速再生
Plant Physiol. 1970 Feb;45(2):201-5. doi: 10.1104/pp.45.2.201.
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Purification of protochlorophyllide holochrome.原叶绿素原质体的纯化。
Plant Physiol. 1968 Jun;43(6):990-6. doi: 10.1104/pp.43.6.990.

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