Ramirez Moreno Miguel, Stempor Przemyslaw A, Bulgakova Natalia A
Department of Biomedical Science and Bateson Centre, The University of Sheffield, Sheffield, England.
SmartImmune Ltd., Cambridge, United Kingdom.
Front Cell Dev Biol. 2021 Jun 28;9:701175. doi: 10.3389/fcell.2021.701175. eCollection 2021.
Epithelial tissues rely on the adhesion between participating cells to retain their integrity. The transmembrane protein E-cadherin is the major protein that mediates homophilic adhesion between neighbouring cells and is, therefore, one of the critical components for epithelial integrity. E-cadherin downregulation has been described extensively as a prerequisite for epithelial-to-mesenchymal transition and is a hallmark in many types of cancer. Due to this clinical importance, research has been mostly focused on understanding the mechanisms leading to transcriptional repression of this adhesion molecule. However, in recent years it has become apparent that re-expression of E-cadherin is a major step in the progression of many cancers during metastasis. Here, we review the currently known molecular mechanisms of E-cadherin transcriptional activation and inhibition and highlight complex interactions between individual mechanisms. We then propose an additional mechanism, whereby the competition between adhesion complexes and heterochromatin protein-1 for binding to STAT92E fine-tunes the levels of E-cadherin expression in but also regulates other genes promoting epithelial robustness. We base our hypothesis on both existing literature and our experimental evidence and suggest that such feedback between the cell surface and the nucleus presents a powerful paradigm for epithelial resilience.
上皮组织依靠参与其中的细胞间黏附来维持其完整性。跨膜蛋白E-钙黏蛋白是介导相邻细胞间嗜同性黏附的主要蛋白,因此是上皮完整性的关键组成部分之一。E-钙黏蛋白的下调已被广泛描述为上皮-间质转化的前提条件,并且是许多类型癌症的一个标志。由于其临床重要性,研究大多集中在理解导致这种黏附分子转录抑制的机制上。然而,近年来已明显发现,E-钙黏蛋白的重新表达是许多癌症转移过程中的一个重要步骤。在这里,我们综述了目前已知的E-钙黏蛋白转录激活和抑制的分子机制,并强调了各个机制之间的复杂相互作用。然后,我们提出了一种额外的机制,即黏附复合物和异染色质蛋白-1之间对STAT92E结合的竞争微调了果蝇中E-钙黏蛋白的表达水平,而且还调节了其他促进上皮稳健性的基因。我们基于现有文献和实验证据提出这一假设,并表明细胞表面和细胞核之间的这种反馈为上皮弹性提供了一个强大的范例。