Department of Advanced Bioscience, Faculty of Agriculture, Kindai University, 3327-204 Nakamachi, Nara 631-8505, Japan.
Department of Life Science and Biotechnology, Faculty of Life and Environmental Science, Shimane University, 1060 Nishikawatsu, Matsue, Shimane 690-8504, Japan.
Sci Rep. 2016 Nov 22;6:37432. doi: 10.1038/srep37432.
The levels and redox states of pyridine nucleotides, such as NADP(H), regulate the cellular redox homeostasis, which is crucial for photooxidative stress response in plants. However, how they are controlled is poorly understood. An Arabidopsis Nudix hydrolase, AtNUDX19, was previously identified to have NADPH hydrolytic activity in vitro, suggesting this enzyme to be a regulator of the NADPH status. We herein examined the physiological role of AtNUDX19 using its loss-of-function mutants. NADPH levels were increased in nudx19 mutants under both normal and high light conditions, while NADP and NAD levels were decreased. Despite the high redox states of NADP(H), nudx19 mutants exhibited high tolerance to moderate light- or methylviologen-induced photooxidative stresses. This tolerance might be partially attributed to the activation of either or both photosynthesis and the antioxidant system. Furthermore, a microarray analysis suggested the role of ANUDX19 in regulation of the salicylic acid (SA) response in a negative manner. Indeed, nudx19 mutants accumulated SA and showed high sensitivity to the hormone. Our findings demonstrate that ANUDX19 acts as an NADPH pyrophosphohydrolase to modulate cellular levels and redox states of pyridine nucleotides and fine-tunes photooxidative stress response through the regulation of photosynthesis, antioxidant system, and possibly hormonal signaling.
吡啶核苷酸(如 NADP(H))的水平和氧化还原状态调节细胞氧化还原稳态,这对于植物的光氧化应激反应至关重要。然而,它们是如何被调控的还知之甚少。先前已经鉴定出拟南芥 Nudix 水解酶 AtNUDX19 在体外具有 NADPH 水解活性,表明该酶是 NADPH 状态的调节剂。我们在此使用其功能丧失突变体来研究 AtNUDX19 的生理作用。在正常和高光条件下,nudx19 突变体中的 NADPH 水平增加,而 NADP 和 NAD 水平降低。尽管 NADP(H)的氧化还原状态很高,但 nudx19 突变体对适度的光或甲基紫精诱导的光氧化应激具有高耐受性。这种耐受性可能部分归因于光合作用和抗氧化系统的激活。此外,微阵列分析表明 ANUDX19 在负向调节水杨酸(SA)反应中起作用。事实上,nudx19 突变体积累了 SA,并且对激素表现出高度敏感性。我们的研究结果表明,ANUDX19 作为 NADPH 焦磷酸水解酶,通过调节光合作用、抗氧化系统以及可能的激素信号通路来调节细胞中吡啶核苷酸的水平和氧化还原状态,并精细调节光氧化应激反应。