Cardone Rosa A, Bagorda Anna, Bellizzi Antonia, Busco Giovanni, Guerra Lorenzo, Paradiso Angelo, Casavola Valeria, Zaccolo Manuela, Reshkin Stephan J
Department of General and Environmental Physiology, University of Bari, 70126 Bari, Italy.
Mol Biol Cell. 2005 Jul;16(7):3117-27. doi: 10.1091/mbc.e04-10-0945. Epub 2005 Apr 20.
Metastasis results from a sequence of selective events often involving interactions with elements of the tumor-specific physiological microenvironment. The low-serum component of this microenvironment confers increased motility and invasion in breast cancer cells by activating the Na+/H+ exchanger isoform 1 (NHE1). The present study was undertaken to characterize the signal transduction mechanisms underlying this serum deprivation-dependent activation of both the NHE1 and the concomitant invasive characteristics such as leading edge pseudopodia development and penetration of matrigel in breast cancer cell lines representing different stages of metastatic progression. Using pharmacological and genetic manipulation together with transport and kinase activity assays, we observe that the activation of the NHE1 and subsequent invasion by serum deprivation in metastatic human breast cells is coordinated by a sequential RhoA/p160ROCK/p38MAPK signaling pathway gated by direct protein kinase A phosphorylation and inhibition of RhoA. Fluorescence resonance energy transfer imaging of RhoA activity and immunofluorescence analysis of phospho-RhoA and NHE1 show that serum deprivation dynamically remodels the cell, forming long, leading edge pseudopodia and that this signal module is preferentially compartmentalized in these leading edge pseudopodia, suggesting a tight topographic relation of the signaling module to an invasion-specific cell structure.
转移是由一系列选择性事件导致的,这些事件通常涉及与肿瘤特异性生理微环境中的元素相互作用。这种微环境中的低血清成分通过激活钠氢交换体同工型1(NHE1),赋予乳腺癌细胞更高的运动性和侵袭性。本研究旨在表征在代表转移进展不同阶段的乳腺癌细胞系中,这种血清剥夺依赖性激活NHE1以及伴随的侵袭特征(如前缘伪足形成和基质胶穿透)背后的信号转导机制。通过药理学和基因操作以及转运和激酶活性测定,我们观察到转移性人乳腺癌细胞中血清剥夺导致的NHE1激活和随后的侵袭是由一个由蛋白激酶A直接磷酸化和抑制RhoA控制的顺序性RhoA/p160ROCK/p38MAPK信号通路协调的。RhoA活性的荧光共振能量转移成像以及磷酸化RhoA和NHE1的免疫荧光分析表明,血清剥夺动态重塑细胞,形成长的前缘伪足,并且该信号模块优先在这些前缘伪足中分隔,表明信号模块与侵袭特异性细胞结构之间存在紧密的拓扑关系。