Department of Human and Molecular Genetics, Virginia Commonwealth University, School of Medicine, Richmond, VA 23298, USA.
Pharmacol Ther. 2011 Apr;130(1):1-8. doi: 10.1016/j.pharmthera.2011.01.008. Epub 2011 Jan 20.
Since its initial identification and cloning in 2002, Astrocyte Elevated Gene-1 (AEG-1), also known as metadherin (MTDH), 3D3 and LYsine-RIch CEACAM1 co-isolated (LYRIC), has emerged as an important oncogene that is overexpressed in all cancers analyzed so far. Examination of a large cohort of patient samples representing diverse cancer indications has revealed progressive increase in AEG-1 expression with stages and grades of the disease and an inverse relationship between AEG-1 expression level and patient prognosis. AEG-1 functions as a bona fide oncogene by promoting transformation. In addition, it plays a significant role in invasion, metastasis, angiogenesis and chemoresistance, all important hallmarks of an aggressive cancer. AEG-1 is also implicated in diverse physiological and pathological processes, such as development, inflammation, neurodegeneration, migraine and Huntington's disease. AEG-1 is a highly basic protein with a transmembrane domain and multiple nuclear localization signals and it is present in the cell membrane, cytoplasm, nucleus, nucleolus and endoplasmic reticulum. In each location, AEG-1 interacts with specific proteins thereby modulating diverse intracellular processes the combination of which contributes to its pleiotrophic properties. The present review provides a snapshot of the current literature along with future perspectives on this unique molecule.
自 2002 年首次鉴定和克隆以来,星形细胞上调基因-1(AEG-1),也称为间变性淋巴瘤激酶融合基因 1(MTDH)、3D3 和富含赖氨酸的 CEACAM1 共分离(LYRIC),已成为一种重要的癌基因,迄今为止在所有分析的癌症中均过度表达。对代表多种癌症适应证的大量患者样本进行检查表明,AEG-1 的表达随着疾病的阶段和分级而逐渐增加,并且 AEG-1 的表达水平与患者的预后呈反比。AEG-1 通过促进转化而作为真正的癌基因发挥作用。此外,它在侵袭、转移、血管生成和化疗耐药性方面发挥重要作用,所有这些都是侵袭性癌症的重要特征。AEG-1 还与多种生理和病理过程有关,如发育、炎症、神经退行性变、偏头痛和亨廷顿病。AEG-1 是一种具有跨膜结构域和多个核定位信号的高度碱性蛋白,存在于细胞膜、细胞质、核、核仁及内质网中。在每个位置,AEG-1 与特定的蛋白质相互作用,从而调节多种细胞内过程,这些过程的结合促成了其多效性。本综述提供了该独特分子的当前文献概述及未来展望。