Van Obberghen-Schilling Ellen, Tucker Richard P, Saupe Falk, Gasser Isabelle, Cseh Botond, Orend Gertraud
CNRS UMR6543, IBDC, Nice, France.
Int J Dev Biol. 2011;55(4-5):511-25. doi: 10.1387/ijdb.103243eo.
In addition to soluble factors, the extracellular matrix (ECM) also plays a vital role in normal vasculogenesis and in the pathological angiogenesis of many disease states. Here we will review what is known about the role of the ECM molecules fibronectin and tenascin-C in the vasculature and highlight a potential collaborative interplay between these molecules in developmental and tumorigenic angiogenesis. We will address the evolution of these modular proteins, their cellular interactions and how they become assembled into an insoluble matrix that impacts the assembly of other ECM proteins and the bioavailability of pro-angiogenic factors. The role of fibronectin and tenascin-C networks in tumor angiogenesis and metastasis will be described. We will elaborate on lessons learned about their role in vessel function from the functional ablation or the ectopic expression of both molecules. We will also elaborate on potential mechanisms of how fibronectin and tenascin-C affect cell adhesion and signaling that are relevant to angiogenesis.
除了可溶性因子外,细胞外基质(ECM)在正常血管生成以及许多疾病状态下的病理性血管生成中也起着至关重要的作用。在此,我们将综述关于ECM分子纤连蛋白和腱生蛋白-C在脉管系统中的作用的已知信息,并强调这些分子在发育性和肿瘤性血管生成中潜在的协同相互作用。我们将探讨这些模块化蛋白质的进化、它们与细胞的相互作用,以及它们如何组装成不溶性基质,进而影响其他ECM蛋白质的组装和促血管生成因子的生物利用度。将描述纤连蛋白和腱生蛋白-C网络在肿瘤血管生成和转移中的作用。我们将详细阐述从这两种分子的功能消融或异位表达中所学到的关于它们在血管功能中作用的经验教训。我们还将详细阐述纤连蛋白和腱生蛋白-C影响与血管生成相关的细胞黏附和信号传导的潜在机制。