Leyva-Díaz Eduardo
Instituto de Neurociencias, CSIC-UMH, Sant Joan d'Alacant, Spain.
Front Cell Neurosci. 2023 Sep 8;17:1233830. doi: 10.3389/fncel.2023.1233830. eCollection 2023.
CUT homeobox genes represent a captivating gene class fulfilling critical functions in the development and maintenance of multiple cell types across a wide range of organisms. They belong to the larger group of homeobox genes, which encode transcription factors responsible for regulating gene expression patterns during development. CUT homeobox genes exhibit two distinct and conserved DNA binding domains, a homeodomain accompanied by one or more CUT domains. Numerous studies have shown the involvement of CUT homeobox genes in diverse developmental processes such as body axis formation, organogenesis, tissue patterning and neuronal specification. They govern these processes by exerting control over gene expression through their transcriptional regulatory activities, which they accomplish by a combination of classic and unconventional interactions with the DNA. Intriguingly, apart from their roles as transcriptional regulators, they also serve as accessory factors in DNA repair pathways through protein-protein interactions. They are highly conserved across species, highlighting their fundamental importance in developmental biology. Remarkably, evolutionary analysis has revealed that CUT homeobox genes have experienced an extraordinary degree of rearrangements and diversification compared to other classes of homeobox genes, including the emergence of a novel gene family in vertebrates. Investigating the functions and regulatory networks of CUT homeobox genes provides significant understanding into the molecular mechanisms underlying embryonic development and tissue homeostasis. Furthermore, aberrant expression or mutations in CUT homeobox genes have been associated with various human diseases, highlighting their relevance beyond developmental processes. This review will overview the well known roles of CUT homeobox genes in nervous system development, as well as their functions in other tissues across phylogeny.
CUT同源框基因是一类引人入胜的基因,在广泛的生物体中多种细胞类型的发育和维持中发挥着关键作用。它们属于更大的同源框基因家族,该家族编码负责在发育过程中调节基因表达模式的转录因子。CUT同源框基因表现出两个不同且保守的DNA结合结构域,一个同源结构域伴随着一个或多个CUT结构域。大量研究表明,CUT同源框基因参与了多种发育过程,如体轴形成、器官发生、组织模式形成和神经元特化。它们通过转录调控活动控制基因表达来支配这些过程,这是通过与DNA的经典和非常规相互作用的组合来实现的。有趣的是,除了作为转录调节因子的作用外,它们还通过蛋白质-蛋白质相互作用在DNA修复途径中充当辅助因子。它们在物种间高度保守,突出了它们在发育生物学中的根本重要性。值得注意的是,进化分析表明,与其他类别的同源框基因相比,CUT同源框基因经历了非同寻常程度的重排和多样化,包括脊椎动物中一个新基因家族的出现。研究CUT同源框基因的功能和调控网络有助于深入了解胚胎发育和组织稳态的分子机制。此外,CUT同源框基因的异常表达或突变与各种人类疾病有关,突出了它们在发育过程之外的相关性。本综述将概述CUT同源框基因在神经系统发育中的已知作用,以及它们在整个系统发育过程中在其他组织中的功能。