Jonischkies Kevin, Del Angel Miguel, Demiray Yunus Emre, Loaiza Zambrano Allison, Stork Oliver
Department of Genetics and Molecular Neurobiology, Institute of Biology, Otto-von-Guericke University Magdeburg, Magdeburg, Germany.
Center for Behavioral Brain Science, Magdeburg, Germany.
Front Mol Neurosci. 2024 May 13;17:1371086. doi: 10.3389/fnmol.2024.1371086. eCollection 2024.
Aging is defined as a progressive decline of cognitive and physiological functions over lifetime. Since the definition of the nine hallmarks of aging in 2013 by López-Otin, numerous studies have attempted to identify the main regulators and contributors in the aging process. One interesting group of proteins whose participation has been implicated in several aging hallmarks are the nuclear DBF2-related (NDR) family of serine-threonine AGC kinases. They are one of the core components of the Hippo signaling pathway and include NDR1, NDR2, LATS1 and LATS2 in mammals, along with its highly conserved metazoan orthologs; Trc in , SAX-1 in , CBK1, DBF20 in and orb6 in . These kinases have been independently linked to the regulation of widely diverse cellular processes disrupted during aging such as the cell cycle progression, transcription, intercellular communication, nutrient homeostasis, autophagy, apoptosis, and stem cell differentiation. However, a comprehensive overview of the state-of-the-art knowledge regarding the post-translational modifications of and by NDR kinases in aging has not been conducted. In this review, we summarize the current understanding of the NDR family of kinases, focusing on their relevance to various aging hallmarks, and emphasize the growing body of evidence that suggests NDR kinases are essential regulators of aging across species.
衰老被定义为一生中认知和生理功能的渐进性衰退。自2013年洛佩斯-奥廷定义衰老的九个标志以来,众多研究试图确定衰老过程中的主要调节因子和促成因素。一类有趣的蛋白质,其参与与多个衰老标志有关,即丝氨酸-苏氨酸AGC激酶的核DBF2相关(NDR)家族。它们是河马信号通路的核心组成部分之一,在哺乳动物中包括NDR1、NDR2、LATS1和LATS2,以及其高度保守的后生动物直系同源物;线虫中的Trc、果蝇中的SAX-1、酿酒酵母中的CBK1、裂殖酵母中的DBF20和裂殖酵母中的orb6。这些激酶已被独立地与衰老过程中被破坏的广泛多样的细胞过程的调节联系起来,如细胞周期进程、转录、细胞间通讯、营养稳态、自噬、凋亡和干细胞分化。然而,尚未对衰老过程中NDR激酶的翻译后修饰及其修饰进行的最新知识进行全面概述。在本综述中,我们总结了目前对NDR激酶家族的理解,重点关注它们与各种衰老标志的相关性,并强调越来越多的证据表明NDR激酶是跨物种衰老的重要调节因子。