Department of Pharmacology, Toxicology and Therapeutic Chemistry, Faculty of Pharmacy and Food Sciences, University of Barcelona, Barcelona, Spain.
Institute of Biomedicine of the University of Barcelona (IBUB), University of Barcelona, Barcelona, Spain.
Med Res Rev. 2024 Jul;44(4):1375-1403. doi: 10.1002/med.22015. Epub 2024 Jan 24.
The growth arrest and DNA damage inducible (GADD)45 family includes three small and ubiquitously distributed proteins (GADD45A, GADD45B, and GADD45G) that regulate numerous cellular processes associated with stress signaling and injury response. Here, we provide a comprehensive review of the current literature investigating GADD45A, the first discovered member of the family. We first depict how its levels are regulated by a myriad of genotoxic and non-genotoxic stressors, and through the combined action of intricate transcriptional, posttranscriptional, and even, posttranslational mechanisms. GADD45A is a recognized tumor suppressor and, for this reason, we next summarize its role in cancer, as well as the different mechanisms by which it regulates cell cycle, DNA repair, and apoptosis. Beyond these most well-known actions, GADD45A may also influence catabolic and anabolic pathways in the liver, adipose tissue and skeletal muscle, among others. Not surprisingly, GADD45A may trigger AMP-activated protein kinase activity, a master regulator of metabolism, and is known to act as a transcriptional coregulator of numerous nuclear receptors. GADD45A has also been reported to display a cytoprotective role by regulating inflammation, fibrosis and oxidative stress in several organs and tissues, and is regarded an important contributor for the development of heart failure. Overall data point to that GADD45A may play an important role in metabolic, neurodegenerative and cardiovascular diseases, and also autoimmune-related disorders. Thus, the potential mechanisms by which dysregulation of GADD45A activity may contribute to the progression of these diseases are also reviewed below.
生长停滞和 DNA 损伤诱导(GADD)45 家族包括三种小而广泛分布的蛋白质(GADD45A、GADD45B 和 GADD45G),它们调节与应激信号和损伤反应相关的许多细胞过程。在这里,我们提供了对当前研究 GADD45A 的文献的全面综述,GADD45A 是该家族中第一个被发现的成员。我们首先描述了其水平如何受到多种遗传毒性和非遗传毒性应激源的调节,以及通过复杂的转录、转录后甚至翻译后机制的共同作用。GADD45A 是一种公认的肿瘤抑制因子,因此,我们接下来总结了它在癌症中的作用,以及它调节细胞周期、DNA 修复和细胞凋亡的不同机制。除了这些最知名的作用外,GADD45A 还可能影响肝脏、脂肪组织和骨骼肌等其他组织中的分解代谢和合成代谢途径。毫不奇怪,GADD45A 可能会触发 AMP 激活蛋白激酶(AMPK)活性,这是代谢的主要调节剂,并且已知作为许多核受体的转录共调节剂发挥作用。据报道,GADD45A 还通过调节几个器官和组织中的炎症、纤维化和氧化应激来发挥细胞保护作用,并且被认为是心力衰竭发展的重要贡献者。总体数据表明,GADD45A 可能在代谢、神经退行性和心血管疾病以及自身免疫相关疾病中发挥重要作用。因此,还审查了下面调节 GADD45A 活性的失调可能导致这些疾病进展的潜在机制。
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