Lavin Deborah P, Tiwari Vijay K
The Wellcome-Wolfson Institute for Experimental Medicine, School of Medicine, Dentistry and Biomedical Science, Queen's University Belfast, Belfast, United Kingdom.
Front Oncol. 2020 May 12;10:554. doi: 10.3389/fonc.2020.00554. eCollection 2020.
Epithelial to mesenchymal transition (EMT) is the process whereby a polarized epithelial cell ceases to maintain cell-cell contacts, loses expression of characteristic epithelial cell markers, and acquires mesenchymal cell markers and properties such as motility, contractile ability, and invasiveness. A complex process that occurs during development and many disease states, EMT involves a plethora of transcription factors (TFs) and signaling pathways. Whilst great advances have been made in both our understanding of the progressive cell-fate changes during EMT and the gene regulatory networks that drive this process, there are still gaps in our knowledge. Epigenetic modifications are dynamic, chromatin modifying enzymes are vast and varied, transcription factors are pleiotropic, and signaling pathways are multifaceted and rarely act alone. Therefore, it is of great importance that we decipher and understand each intricate step of the process and how these players at different levels crosstalk with each other to successfully orchestrate EMT. A delicate balance and fine-tuned cooperation of gene regulatory mechanisms is required for EMT to occur successfully, and until we resolve the unknowns in this network, we cannot hope to develop effective therapies against diseases that involve aberrant EMT such as cancer. In this review, we focus on data that challenge these unknown entities underlying EMT, starting with EMT stimuli followed by intracellular signaling through to epigenetic mechanisms and chromatin remodeling.
上皮-间质转化(EMT)是一个极化上皮细胞停止维持细胞间接触、失去特征性上皮细胞标志物表达,并获得间质细胞标志物及诸如运动性、收缩能力和侵袭性等特性的过程。EMT是一个在发育过程和许多疾病状态中发生的复杂过程,涉及大量转录因子(TFs)和信号通路。虽然我们在理解EMT过程中细胞命运的渐进性变化以及驱动这一过程的基因调控网络方面取得了巨大进展,但我们的知识仍存在空白。表观遗传修饰是动态的,染色质修饰酶种类繁多,转录因子具有多效性,信号通路是多方面的且很少单独起作用。因此,我们解读和理解该过程的每一个复杂步骤以及这些不同层面的参与者如何相互串扰以成功协调EMT至关重要。EMT的成功发生需要基因调控机制的微妙平衡和精细合作,在我们解决这个网络中的未知问题之前,我们无法期望开发出针对涉及异常EMT的疾病(如癌症)的有效疗法。在这篇综述中,我们关注挑战EMT潜在这些未知实体的数据,从EMT刺激开始,接着是细胞内信号传导,直至表观遗传机制和染色质重塑。