Department of Molecular Medicine, Institute of Virology, Slovak Academy of Sciences, Bratislava, Slovak Republic.
Cancer Res. 2011 Dec 15;71(24):7558-67. doi: 10.1158/0008-5472.CAN-11-2520. Epub 2011 Oct 28.
In the hypoxic regions of a tumor, carbonic anhydrase IX (CA IX) is an important transmembrane component of the pH regulatory machinery that participates in bicarbonate transport. Because tumor pH has implications for growth, invasion, and therapy, determining the basis for the contributions of CA IX to the hypoxic tumor microenvironment could lead to new fundamental and practical insights. Here, we report that Thr443 phosphorylation at the intracellular domain of CA IX by protein kinase A (PKA) is critical for its activation in hypoxic cells, with the fullest activity of CA IX also requiring dephosphorylation of Ser448. PKA is activated by cAMP, which is elevated by hypoxia, and we found that attenuating PKA in cells disrupted CA IX-mediated extracellular acidification. Moreover, following hypoxia induction, CA IX colocalized with the sodium-bicarbonate cotransporter and other PKA substrates in the leading edge membranes of migrating tumor cells, in support of the concept that bicarbonate metabolism is spatially regulated at cell surface sites with high local ion transport and pH control. Using chimeric CA IX proteins containing heterologous catalytic domains derived from related CA enzymes, we showed that CA IX activity was modulated chiefly by the intracellular domain where Thr443 is located. Our findings indicate that CA IX is a pivotal mediator of the hypoxia-cAMP-PKA axis, which regulates pH in the hypoxic tumor microenvironment.
在肿瘤的缺氧区域,碳酸酐酶 IX(CAIX)是参与碳酸氢盐转运的 pH 调节机制中的重要跨膜成分。由于肿瘤 pH 值对生长、侵袭和治疗都有影响,确定 CAIX 对缺氧肿瘤微环境的贡献的基础可能会带来新的基本和实际的见解。在这里,我们报告 CAIX 细胞内结构域的 Thr443 由蛋白激酶 A(PKA)磷酸化对其在缺氧细胞中的激活至关重要,而 CAIX 的最大活性还需要 Ser448 的去磷酸化。PKA 被 cAMP 激活,cAMP 在缺氧时升高,我们发现细胞中 PKA 的衰减会破坏 CAIX 介导的细胞外酸化。此外,在缺氧诱导后,CAIX 与钠-碳酸氢盐共转运体和迁移肿瘤细胞前缘膜中的其他 PKA 底物共定位,支持碳酸氢盐代谢在具有高局部离子转运和 pH 控制的细胞表面部位进行空间调节的概念。使用包含来自相关 CA 酶的异源催化结构域的嵌合 CAIX 蛋白,我们表明 CAIX 的活性主要受包含 Thr443 的细胞内结构域调节。我们的研究结果表明,CAIX 是缺氧-cAMP-PKA 轴的关键介质,该轴调节缺氧肿瘤微环境中的 pH 值。