a Department of Biochemistry, Faculty of Medicine and Health Sciences , Ghent University , Ghent , Belgium.
MAbs. 2018 Oct;10(7):1045-1059. doi: 10.1080/19420862.2018.1502025. Epub 2018 Sep 11.
The tumor suppressor p53 is of crucial importance in the prevention of cellular transformation. In the presence of cellular stress signals, the negative feedback loop between p53 and Mdm2, its main negative regulator, is disrupted, which results in the activation and stabilization of p53. Via a complex interplay between both transcription-dependent and - independent functions of p53, the cell will go through transient cell cycle arrest, cellular senescence or apoptosis. However, it remains difficult to completely fathom the mechanisms behind p53 regulation and its responses, considering the presence of multiple layers involved in fine-tuning them. In order to take the next step forward, novel research tools are urgently needed. We have developed single-domain antibodies, also known as nanobodies, that specifically bind with the N-terminal transactivation domain of wild type p53, but that leave the function of p53 as a transcriptional transactivator intact. When the nanobodies are equipped with a mitochondrial-outer-membrane (MOM)-tag, we can capture p53 at the mitochondria. This nanobody-induced mitochondrial delocalization of p53 is, in specific cases, associated with a decrease in cell viability and with morphological changes in the mitochondria. These findings underpin the potential of nanobodies as bona fide research tools to explore protein function and to unravel their biochemical pathways.
抑癌蛋白 p53 对预防细胞转化至关重要。在细胞应激信号存在的情况下,p53 与其主要负调控因子 Mdm2 之间的负反馈环被破坏,导致 p53 的激活和稳定。通过 p53 的转录依赖和非依赖功能之间的复杂相互作用,细胞将经历短暂的细胞周期停滞、细胞衰老或细胞凋亡。然而,考虑到精细调节它们的多个层面的存在,要完全理解 p53 调节及其反应的机制仍然很困难。为了向前迈出下一步,迫切需要新的研究工具。我们开发了单域抗体,也称为纳米抗体,它们特异性结合野生型 p53 的 N 端转录激活域,但不影响 p53 作为转录激活因子的功能。当纳米抗体配备线粒体外膜(MOM)标记时,我们可以在线粒体捕获 p53。在某些情况下,纳米抗体诱导的 p53 线粒体定位缺失与细胞活力下降和线粒体形态变化有关。这些发现为纳米抗体作为探索蛋白质功能和揭示其生化途径的真正研究工具提供了潜力。