Gibb Maya, Kisiala Anna B, Morrison Erin N, Emery R J Neil
Department of Biology, Trent University, Peterborough, ON, Canada.
Front Cell Dev Biol. 2020 Nov 9;8:605672. doi: 10.3389/fcell.2020.605672. eCollection 2020.
Cytokinins (CKs) are a group of adenine-derived, small signaling molecules of crucial importance for growth and multiple developmental processes in plants. Biological roles of classical CKs: isopentenyladenine (iP), and isomers of zeatin (Z, Z), and dihydrozeatin, have been studied extensively and their functions are well defined in many aspects of plant physiology. In parallel, extensive knowledge exists for genes involved in tRNA modifications that lead to the production of tRNA-bound methylthiolated CKs, especially in bacterial and mammalian systems. However, not much is known about the origins, fates, and possible functions of the unbound methylthiolated CKs (2MeS-CKs) in biological systems. 2MeS-CKs are the free base or riboside derivatives of iP or Z-type CKs, modified by the addition of a thiol group (-SH) at position 2 of the adenine ring that is subsequently methylated. Based on the evidence to date, these distinctive CK conjugates are derived exclusively via the tRNA degradation pathway. This review summarizes the knowledge on the probable steps involved in the biosynthesis of unbound 2MeS-CKs across diverse kingdoms of life. Furthermore, it provides examples of CK profiles of organisms from which the presence of 2MeS-CKs have been detected and confirms a close association and balance between the production of classical CKs and 2MeS-CKs. Finally, it discusses available reports regarding the possible physiological functions of 2MeS-CKs in different biological systems.
细胞分裂素(CKs)是一类由腺嘌呤衍生而来的小分子信号分子,对植物的生长和多个发育过程至关重要。经典细胞分裂素的生物学作用,如异戊烯基腺嘌呤(iP)、玉米素(Z、Z)及其异构体和二氢玉米素,已得到广泛研究,其功能在植物生理学的许多方面都有明确界定。与此同时,对于参与tRNA修饰从而导致产生与tRNA结合的甲基硫醇化细胞分裂素的基因,我们也有了广泛的认识,尤其是在细菌和哺乳动物系统中。然而,对于生物系统中未结合的甲基硫醇化细胞分裂素(2MeS-CKs)的来源、去向和可能的功能,我们了解得并不多。2MeS-CKs是iP或Z型细胞分裂素的游离碱或核糖苷衍生物,通过在腺嘌呤环的2位添加一个硫醇基团(-SH)进行修饰,随后该基团被甲基化。根据目前的证据,这些独特的细胞分裂素共轭物完全通过tRNA降解途径产生。本综述总结了关于不同生命王国中未结合的2MeS-CKs生物合成可能涉及步骤的知识。此外,它还提供了已检测到2MeS-CKs存在的生物体的细胞分裂素谱实例,并证实了经典细胞分裂素和2MeS-CKs的产生之间存在密切关联和平衡。最后,它讨论了关于2MeS-CKs在不同生物系统中可能的生理功能的现有报告。