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C4和景天酸代谢植物中磷酸烯醇式丙酮酸羧化酶的翻译后调控

Posttranslational regulation of phosphoenolpyruvate carboxylase in c(4) and crassulacean Acid metabolism plants.

作者信息

Jiao J A, Chollet R

机构信息

Department of Biochemistry, University of Nebraska-Lincoln, East Campus, Lincoln, Nebraska 68583-0718.

出版信息

Plant Physiol. 1991 Apr;95(4):981-5. doi: 10.1104/pp.95.4.981.

Abstract

Control of C(4) photosynthesis and Crassulacean acid metabolism (CAM) is, in part, mediated by the diel regulation of phosphoenolpyruvate carboxylase (PEPC) activity. The nature of this regulation of PEPC in the leaf cell cytoplasm of C(4) and CAM plants is both metabolite-related and posttranslational. Specificially, the regulatory properties of the enzyme vary in accord with the physiological activity of C(4) photosynthesis and CAM: PEPC is less sensitive to feedback inhibition by l-malate under light (C(4) plants) or at night (CAM plants) than in darkness (C(4)) or during the day (CAM). While the view that a light-induced change in the aggregation state of the holoenzyme is a general mechanism for the diel regulation of PEPC activity in CAM plants is currently in dispute, there is no supportive in vivo evidence for such a tetramer/dimer interconversion in C(4) plants. In contrast, a wealth of in vitro and in vivo data has accumulated in support of the view that the reversible phosphorylation of a specific, N-terminal regulatory serine residue in PEPC (e.g. Ser-15 or Ser-8 in the maize or sorghum enzymes, respectively) plays a key, if not cardinal, role in the posttranslational regulation of the carboxylase by light/dark or day/night transitions in both C(4) and CAM plants, respectively.

摘要

C4光合作用和景天酸代谢(CAM)的调控部分是由磷酸烯醇式丙酮酸羧化酶(PEPC)活性的昼夜调节介导的。在C4和CAM植物的叶细胞质中,这种对PEPC的调节性质既与代谢物有关,也与翻译后修饰有关。具体而言,该酶的调节特性随C4光合作用和CAM的生理活性而变化:与黑暗中(C4植物)或白天(CAM植物)相比,PEPC在光照下(C4植物)或夜间(CAM植物)对L-苹果酸的反馈抑制不太敏感。虽然目前关于全酶聚集状态的光诱导变化是CAM植物中PEPC活性昼夜调节的一般机制这一观点存在争议,但在C4植物中没有体内证据支持这种四聚体/二聚体的相互转化。相比之下,大量的体外和体内数据积累支持了这样一种观点,即在C4和CAM植物中,分别通过光/暗或昼/夜转换,PEPC中特定的N端调节丝氨酸残基(例如玉米或高粱酶中的Ser-15或Ser-8)的可逆磷酸化在羧化酶的翻译后调节中起着关键作用(如果不是主要作用的话)。

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