Division of Chemistry, Life Science & Engineering, King Abdullah University of Science and Technology, Thuwal 23955-6900, Kingdom of Saudi Arabia.
Cell Commun Signal. 2010 Jun 25;8:15. doi: 10.1186/1478-811X-8-15.
In lower eukaryotes and animals 3'-5'-cyclic adenosine monophosphate (cAMP) and adenyl cyclases (ACs), enzymes that catalyse the formation of cAMP from ATP, have long been established as key components and second messengers in many signaling pathways. In contrast, in plants, both the presence and biological role of cAMP have been a matter of ongoing debate and some controversy. Here we shall focus firstly on the discovery of cellular cAMP in plants and evidence for a role of this second messenger in plant signal transduction. Secondly, we shall review current evidence of plant ACs, analyse aspects of their domain organisations and the biological roles of candidate molecules. In addition, we shall assess different approaches based on search motifs consisting of functionally assigned amino acids in the catalytic centre of annotated and/or experimentally tested nucleotide cyclases that can contribute to the identification of novel candidate molecules with AC activity such as F-box and TIR proteins.
在较低等真核生物和动物中,3'-5'-环腺苷酸(cAMP)和腺苷酸环化酶(ACs),即催化 ATP 生成 cAMP 的酶,长期以来一直是许多信号通路中的关键组成部分和第二信使。相比之下,在植物中,cAMP 的存在及其生物学作用一直是一个持续争论和存在一些争议的问题。在这里,我们首先将重点放在植物中细胞 cAMP 的发现以及这种第二信使在植物信号转导中的作用的证据上。其次,我们将回顾目前关于植物 AC 的证据,分析它们的结构域组织以及候选分子的生物学作用。此外,我们还将评估基于搜索模体的不同方法,这些搜索模体由注释和/或经过实验测试的核苷酸环化酶的催化中心中的功能分配氨基酸组成,这些方法有助于识别具有 AC 活性的新候选分子,如 F-box 和 TIR 蛋白。