Ventrella Rosa, Kaplan Nihal, Getsios Spiro
Department of Dermatology, Northwestern University, 303 E. Chicago Ave, Chicago, IL 60611, USA.
Department of Dermatology, Northwestern University, 303 E. Chicago Ave, Chicago, IL 60611, USA.
Exp Cell Res. 2017 Sep 1;358(1):58-64. doi: 10.1016/j.yexcr.2017.03.024. Epub 2017 Mar 18.
During development, cells of seemingly homogenous character sort themselves out into distinct compartments in order to generate cell types with specialized features that support tissue morphogenesis and function. This process is often driven by receptors at the cell membrane that probe the extracellular microenvironment for specific ligands and alter downstream signaling pathways impacting transcription, cytoskeletal organization, and cell adhesion to regulate cell sorting and subsequent boundary formation. This review will focus on two of these receptor families, Eph and Notch, both of which are intrinsically non-adhesive and are activated by a unique set of ligands that are asymmetrically distributed from their receptor on neighboring cells. Understanding the requirement of asymmetric ligand-receptor signaling at the membrane under homeostatic conditions gives insight into how misregulation of these pathways contributes to boundary disruption in diseases like cancer.
在发育过程中,看似具有同质特征的细胞会自行分类到不同的区室中,以产生具有支持组织形态发生和功能的特殊特征的细胞类型。这一过程通常由细胞膜上的受体驱动,这些受体探测细胞外微环境中的特定配体,并改变影响转录、细胞骨架组织和细胞黏附的下游信号通路,以调节细胞分类和随后的边界形成。本综述将聚焦于其中两个受体家族,即Eph和Notch,它们本质上都是非黏附性的,并由一组独特的配体激活,这些配体在相邻细胞上与其受体呈不对称分布。了解稳态条件下膜上不对称配体-受体信号传导的需求,有助于深入了解这些信号通路的失调如何导致癌症等疾病中的边界破坏。