Department of Bioscience, Biotechnology and Pharmacological Sciences, University of Bari, Bari, Italy.
Mol Biol Cell. 2012 Jun;23(11):2028-40. doi: 10.1091/mbc.E11-11-0911. Epub 2012 Apr 11.
Metastatic cells are highly plastic for differential expression of tumor phenotype hallmarks and metastatic organotropism. The signaling proteins orchestrating the shift of one cell phenotype and organ pattern to another are little known. Na(+)/H(+) exchanger regulatory factor (NHERF1) is a molecular pathway organizer, PDZ-domain protein that recruits membrane, cytoplasmic, and cytoskeletal signaling proteins into functional complexes. To gain insight into the role of NHERF1 in metastatic progression, we stably transfected a metastatic breast cell line, MDA-MB-231, with an empty vector, with wild-type NHERF1, or with NHERF1 mutated in either the PDZ1- or PDZ2-binding domains to block their binding activities. We observed that NHERF1 differentially regulates the expression of two phenotypic programs through its PDZ domains, and these programs form the mechanistic basis for metastatic organotropism. The PDZ2 domain promotes visceral metastases via increased invadopodia-dependent invasion and anchorage-independent growth, as well as by inhibition of apoptosis, whereas the PDZ1 domain promotes bone metastases by stimulating podosome nucleation, motility, neoangiogenesis, vasculogenic mimicry, and osteoclastogenesis in the absence of increased growth or invasion. Collectively, these findings identify NHERF1 as an important signaling nexus for coordinating cell structure with metastatic behavior and identifies the "mesenchymal-to-vasculogenic" phenotypic transition as an essential step in metastatic progression.
转移细胞在肿瘤表型特征和转移器官趋向性的差异表达方面具有高度的可塑性。协调一个细胞表型和器官模式向另一个模式转变的信号蛋白知之甚少。Na(+)/H(+)交换调节剂因子(NHERF1)是一种分子途径调节剂,PDZ 结构域蛋白,可将膜、细胞质和细胞骨架信号蛋白募集到功能复合物中。为了深入了解 NHERF1 在转移进展中的作用,我们用空载体、野生型 NHERF1 或 NHERF1 突变体(突变 PDZ1 或 PDZ2 结合域以阻断其结合活性)稳定转染转移性乳腺癌细胞系 MDA-MB-231。我们观察到 NHERF1 通过其 PDZ 结构域差异调节两种表型程序的表达,这些程序构成了转移器官趋向性的机制基础。PDZ2 结构域通过增加依赖侵袭小窝的侵袭和无锚定生长,以及抑制细胞凋亡,促进内脏转移,而 PDZ1 结构域通过刺激足突核形成、运动、新血管生成、血管生成拟态和破骨细胞生成,促进骨转移,而不增加生长或侵袭。总的来说,这些发现表明 NHERF1 是协调细胞结构与转移行为的重要信号枢纽,并确定“间质到血管生成”表型转变是转移进展的重要步骤。