Levayer Romain
Institut de Biologie du Developpement de Marseille Luminy, Marseille, France.
Biol Aujourdhui. 2012;206(3):219-36. doi: 10.1051/jbio/2012021. Epub 2012 Nov 22.
The epithelium is one of the most abundant tissues in metazoans. It is required to generate stable chemical and mechanical barriers between physiological compartments (fluid matrix/external environment). This function is based on multiple intercellular junctions, which insulate and stabilize cell-cell contacts in the tissue. Despite this apparent robustness, epithelia can be extensively remodeled during wound healing, embryogenesis and tumor progression. The capacity to be remodeled while keeping tissue cohesion requires a perfect balance between stability and plasticity of intercellular junctions. The balance is partially regulated by intercellular adhesion, which is mostly based on adherens junctions and the transmembrane protein E-cadherin. The aim of this review is to report the molecular basis of the balance between plasticity and robustness in the epithelium. We will first present the minimal physical framework used to describe epithelial cell shape. We will then describe the main processes involved in intercellular adhesion regulation and their functions during epithelial morphogenesis. Eventually, we will analyze the relationship and the coupling between adhesive forces and cortical tension.
上皮组织是后生动物中最丰富的组织之一。它需要在生理区室(流体基质/外部环境)之间形成稳定的化学和机械屏障。该功能基于多种细胞间连接,这些连接可隔离并稳定组织中的细胞-细胞接触。尽管上皮组织看似坚固,但在伤口愈合、胚胎发育和肿瘤进展过程中,上皮组织会发生广泛的重塑。在保持组织凝聚力的同时进行重塑的能力需要细胞间连接的稳定性和可塑性之间达到完美平衡。这种平衡部分受细胞间黏附调节,而细胞间黏附主要基于黏着连接和跨膜蛋白E-钙黏蛋白。本综述的目的是报告上皮组织中可塑性与坚固性之间平衡的分子基础。我们将首先介绍用于描述上皮细胞形状的最小物理框架。然后,我们将描述细胞间黏附调节中涉及的主要过程及其在上皮形态发生过程中的功能。最后,我们将分析黏附力与皮质张力之间的关系及耦合。