Olsson M, Forsberg J, Zhivotovsky B
Division of Toxicology, Institute of Environmental Medicine, Karolinska Institutet, Stockholm, Sweden.
1] Division of Toxicology, Institute of Environmental Medicine, Karolinska Institutet, Stockholm, Sweden [2] Faculty of Fundamental Medicine, Lomonosov Moscow State University, Moscow, Russia.
Oncogene. 2015 Apr 9;34(15):1877-82. doi: 10.1038/onc.2014.139. Epub 2014 Jun 2.
On the basis of evidences that caspase-2 gene targeting in several generated mouse models accelerates tumor formation, this enzyme was recently implicated in tumor suppression. The observed function, however, compels other molecular perturbations harboring tumorigenic properties. Therefore, the question remains as to whether or not caspase-2 can be considered a true tumor suppressor? The traditional view of caspase-2 being vital for the apoptotic response to induced cell stress in some systems is in line with these findings. Yet, caspase-2 has also been associated with other processes which equally might interfere with tumorigenic potential, including the oxidative stress response, aging and genome surveillance. By different mechanisms, this enzyme has been proposed to function as a checkpoint regulator in the cell cycle. Together, these data indicate that caspase-2 is a highly versatile factor, a view that is contrasted by the alternative explanation where the enzyme harbors a mechanism affecting a discrete process, which in turn is functionally connected to other cell systems. In any case, it is clear that the general view of caspase-2 as a protein mainly involved in apoptotic cell death is shattered. Hence, we wish to discuss the perspectives of recent achievements in caspase-2-related research.
基于在多个生成的小鼠模型中靶向caspase-2基因会加速肿瘤形成的证据,这种酶最近被认为与肿瘤抑制有关。然而,观察到的功能促使其他具有致瘤特性的分子扰动产生。因此,caspase-2是否可被视为真正的肿瘤抑制因子这一问题仍然存在。在某些系统中,传统观点认为caspase-2对诱导细胞应激的凋亡反应至关重要,这与这些发现一致。然而,caspase-2也与其他同样可能干扰致瘤潜能的过程有关,包括氧化应激反应、衰老和基因组监测。通过不同机制,有人提出这种酶在细胞周期中起检查点调节作用。总之,这些数据表明caspase-2是一个高度多功能的因子,这一观点与另一种解释形成对比,即该酶具有影响一个离散过程的机制,而这个过程又在功能上与其他细胞系统相连。无论如何,很明显,caspase-2主要参与凋亡性细胞死亡的普遍观点已被打破。因此,我们希望讨论caspase-2相关研究近期成果的前景。