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首页> 外文期刊>Plant physiology >Synthesis of the Arabidopsis bifunctional lysine-ketoglutarate reductase/saccharopine dehydrogenase enzyme of lysine catabolism is concertedly regulated by metabolic and stress-associated signals
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Synthesis of the Arabidopsis bifunctional lysine-ketoglutarate reductase/saccharopine dehydrogenase enzyme of lysine catabolism is concertedly regulated by metabolic and stress-associated signals

机译:拟南芥双功能赖氨酸分解代谢赖氨酸-酮戊二酸还原酶/糖碱脱氢酶的合成受代谢和应激相关信号的协调调节

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In plants, excess cellular lysine (Lys) is catabolized into glutamic acid and acetyl-coenzyme A; yet, it is still not clear whether this pathway has other functions in addition to balancing Lys levels. To address this issue, we examined the effects of stress-related hormones, abscisic acid (ABA), and jasmonate, as well as various metabolic signals on the production of the mRNA and polypeptide of the bifunctional Lys-ketoglutarate reductase (LKR)/saccharopine dehydrogenase (SDH) enzyme, which contains the first two linked enzymes of Lys catabolism. The level of LKR/SDH was strongly enhanced by ABA, jasmonate, and sugar starvation, whereas excess sugars and nitrogen starvation reduced its level; thus this pathway appears to fulfill multiple functions in stress-related and carbonitrogen metabolism. Treatments with combination of hormones and/or metabolites, as well as use of ABA mutants in conjunction with the tester sugars mannose and 3-O-methyl-glucose further supported the idea that the hormonal and metabolic signals apparently operate through different signal transduction cascades. The stimulation of LKR/SDH protein expression by ABA is regulated by a signal transduction. cascade that contains the ABI1-1 and ABI2-1 protein phosphatases. By contrast, the stimulation of LKR/SDH protein expression by sugar starvation is regulated by the hexokinase-signaling cascade in a similar manner to the repression of many photosynthetic genes by sugars. These findings suggest a metabolic and mechanistic link between Lys catabolism and photosynthesis-related metabolism in the regulation of carbonitrogen partitioning.
机译:在植物中,过量的细胞赖氨酸(Lys)被分解代谢为谷氨酸和乙酰辅酶A。然而,目前尚不清楚该途径是否除了平衡Lys水平外还具有其他功能。为了解决这个问题,我们研究了压力相关激素,脱落酸(ABA)和茉莉酸以及各种代谢信号对双功能Lys-酮戊二酸还原酶(LKR)/糖精的mRNA和多肽产生的影响。脱氢酶(SDH)酶,其中包含Lys分解代谢的前两个连锁酶。 ABA,茉莉酸酯和糖饥饿严重增强了LKR / SDH的水平,而过量的糖和氮饥饿则降低了其水平。因此,该途径似乎在应激相关和碳/氮代谢中具有多种功能。激素和/或代谢物组合的治疗,以及将ABA突变体与测试糖甘露糖和3-O-甲基葡萄糖结合使用,进一步支持了激素和代谢信号显然通过不同的信号转导级联起作用的想法。 ABA刺激LKR / SDH蛋白表达受到信号转导的调节。级联包含ABI1-1和ABI2-1蛋白磷酸酶。相比之下,己糖激酶信号级联反应通过糖饥饿刺激LKR / SDH蛋白表达的方式与糖抑制许多光合基因的方式相似。这些发现表明,在碳/氮分配的调节中,赖氨酸分解代谢与光合作用相关的代谢之间存在代谢和机理上的联系。

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