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阿拉伯咖啡完整叶片中嘌呤代谢的调控

Regulation of Purine Metabolism in Intact Leaves of Coffea arabica.

作者信息

Nazario G. M., Lovatt C. J.

机构信息

Department of Botany and Plant Sciences, University of California, Riverside, California 92521-0124.

出版信息

Plant Physiol. 1993 Dec;103(4):1195-1201. doi: 10.1104/pp.103.4.1195.

Abstract

The capacity of Coffea arabica leaves (5- x 5-mm pieces) to synthesize de novo and catabolize purine nucleotides to provide precursors for caffeine (1,3,7-trimethylxanthine) was investigated. Consistent with de novo synthesis, glycine, bicarbonate, and formate were incorporated into the purine ring of inosine 5[prime]-monophosphate (IMP) and adenine nucleotides ([sigma]Ade); azaserine, a known inhibitor of purine de novo synthesis, inhibited incorporation. Activity of the de novo pathway in C. arabica per g fresh weight of leaf tissue during a 3-h incubation period was 8 [plus or minus] 4 nmol of formate incorporated into IMP, 61 [plus or minus] 7 nmol into [sigma]Ade, and 150 nmol into caffeine (the latter during a 7-h incubation). Coffee leaves exhibited classical purine catabolism. Radiolabeled formate, inosine, adenosine, and adenine were incorporated into hypoxanthine and xanthine, which were catabolized to allantoin and urea. Urease activity was demonstrated. Per g fresh weight, coffee leaf squares incorporated 90 [plus or minus] 22 nmol of xanthine into caffeine in 7 h but degraded 102 [plus or minus] 1 nmol of xanthine to allantoin in 3 h. Feedback control of de novo purine biosynthesis was contrasted in C. arabica and Cucurbita pepo, a species that does not synthesize purine alkaloids. End-product inhibition was demonstrated to occur in both species but at different enzyme reactions.

摘要

研究了阿拉伯咖啡豆(5×5毫米碎片)从头合成和分解嘌呤核苷酸以提供咖啡因(1,3,7-三甲基黄嘌呤)前体的能力。与从头合成一致,甘氨酸、碳酸氢盐和甲酸盐被掺入肌苷5'-单磷酸(IMP)和腺嘌呤核苷酸(σAde)的嘌呤环中;氮杂丝氨酸是一种已知的嘌呤从头合成抑制剂,可抑制掺入。在3小时的孵育期内,每克新鲜叶组织中阿拉伯咖啡豆从头合成途径的活性为:8±4纳摩尔甲酸盐掺入IMP,61±7纳摩尔掺入σAde,150纳摩尔掺入咖啡因(后者在7小时孵育期间)。咖啡叶表现出典型的嘌呤分解代谢。放射性标记的甲酸盐、肌苷、腺苷和腺嘌呤被掺入次黄嘌呤和黄嘌呤,它们被分解为尿囊素和尿素。证明了脲酶活性。每克鲜重,咖啡叶方块在7小时内将90±22纳摩尔黄嘌呤掺入咖啡因,但在3小时内将102±1纳摩尔黄嘌呤降解为尿囊素。对比了阿拉伯咖啡豆和西葫芦(一种不合成嘌呤生物碱的物种)中嘌呤从头生物合成的反馈控制。证明终产物抑制在两个物种中均发生,但发生在不同的酶反应中。

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