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一种新的腺苷酸环化酶,假定的抗病 RPP13 样蛋白 3,参与玉米中脱落酸介导的耐热性。

A new adenylyl cyclase, putative disease-resistance RPP13-like protein 3, participates in abscisic acid-mediated resistance to heat stress in maize.

机构信息

State Key Laboratory of Wheat & Maize Crop Science, Henan Agricultural University, Zhengzhou, China.

出版信息

J Exp Bot. 2021 Feb 2;72(2):283-301. doi: 10.1093/jxb/eraa431.

Abstract

In plants, 3´,5´-cyclic adenosine monophosphate (cAMP) is an important second messenger with varied functions; however, only a few adenylyl cyclases (ACs) that synthesize cAMP have been identified. Moreover, the biological roles of ACs/cAMP in response to stress remain largely unclear. In this study, we used quantitative proteomics techniques to identify a maize heat-induced putative disease-resistance RPP13-like protein 3 (ZmRPP13-LK3), which has three conserved catalytic AC centres. The AC activity of ZmRPP13-LK3 was confirmed by in vitro enzyme activity analysis, in vivo RNAi experiments, and functional complementation in the E. coli cyaA mutant. ZmRPP13-LK3 is located in the mitochondria. The results of in vitro and in vivo experiments indicated that ZmRPP13-LK3 interacts with ZmABC2, a possible cAMP exporter. Under heat stress, the concentrations of ZmRPP13-LK3 and cAMP in the ABA-deficient mutant vp5 were significantly less than those in the wild-type, and treatment with ABA and an ABA inhibitor affected ZmRPP13-LK3 expression in the wild-type. Application of 8-Br-cAMP, a cAMP analogue, increased heat-induced expression of heat-shock proteins in wild-type plants and alleviated heat-activated oxidative stress. Taken together, our results indicate that ZmRPP13-LK3, a new AC, can catalyse ATP for the production of cAMP and may be involved in ABA-regulated heat resistance.

摘要

在植物中,3´,5´-环腺苷酸(cAMP)是一种具有多种功能的重要第二信使;然而,只有少数合成 cAMP 的腺苷酸环化酶(ACs)被鉴定出来。此外,ACs/cAMP 对胁迫的生物学作用在很大程度上仍不清楚。在这项研究中,我们使用定量蛋白质组学技术鉴定了一个玉米热诱导的假定抗病 RPP13 样蛋白 3(ZmRPP13-LK3),它具有三个保守的催化 AC 中心。通过体外酶活性分析、体内 RNAi 实验以及在大肠杆菌 cyaA 突变体中的功能互补,证实了 ZmRPP13-LK3 的 AC 活性。ZmRPP13-LK3 位于线粒体中。体外和体内实验的结果表明,ZmRPP13-LK3 与 ZmABC2 相互作用,ZmABC2 可能是 cAMP 外排泵。在热胁迫下,ABA 缺陷突变体 vp5 中的 ZmRPP13-LK3 和 cAMP 浓度明显低于野生型,ABA 和 ABA 抑制剂处理影响野生型中 ZmRPP13-LK3 的表达。cAMP 类似物 8-Br-cAMP 的应用增加了野生型植物中热诱导的热休克蛋白的表达,并减轻了热激活的氧化应激。总之,我们的结果表明,ZmRPP13-LK3 是一种新的 AC,可以催化 ATP 生成 cAMP,可能参与 ABA 调节的耐热性。

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