Reshkin Stephan Joel, Greco Maria Raffaella, Cardone Rosa Angela
Department of Bioscience, Biotechnology and Biopharmaceutics, University of Bari, , Bari 70126, Italy.
Philos Trans R Soc Lond B Biol Sci. 2014 Feb 3;369(1638):20130100. doi: 10.1098/rstb.2013.0100. Print 2014 Mar 19.
The change of a normal, healthy cell to a transformed cell is the first step in the evolutionary arc of a cancer. While the role of oncogenes in this 'passage' is well known, the role of ion transporters in this critical step is less known and is fundamental to our understanding the early physiological processes of carcinogenesis. Cancer cells and tissues have an aberrant regulation of hydrogen ion dynamics leading to a reversal of the normal tissue intracellular to extracellular pH gradient (ΔpHi to ΔpHe). When this perturbation in pH dynamics occurs during carcinogenesis is less clear. Very early studies using the introduction of different oncogene proteins into cells observed a concordance between neoplastic transformation and a cytoplasmic alkalinization occurring concomitantly with a shift towards glycolysis in the presence of oxygen, i.e. 'Warburg metabolism'. These processes may instigate a vicious cycle that drives later progression towards fully developed cancer where the reversed pH gradient becomes ever more pronounced. This review presents our understanding of the role of pH and the NHE1 in driving transformation, in determining the first appearance of the cancer 'hallmark' characteristics and how the use of pharmacological approaches targeting pH/NHE1 may open up new avenues for efficient treatments even during the first steps of cancer development.
正常健康细胞转变为转化细胞是癌症演变过程的第一步。虽然癌基因在这一“转变过程”中的作用已为人熟知,但离子转运体在这一关键步骤中的作用却鲜为人知,而这对于我们理解癌症发生的早期生理过程至关重要。癌细胞和组织对氢离子动力学存在异常调节,导致正常组织细胞内与细胞外pH梯度(ΔpHi至ΔpHe)发生逆转。目前尚不清楚这种pH动力学扰动在癌症发生过程中何时出现。早期的研究通过将不同的癌基因蛋白导入细胞,观察到肿瘤转化与细胞质碱化之间存在一致性,同时在有氧条件下向糖酵解转变,即“瓦伯格代谢”。这些过程可能引发一个恶性循环,推动癌症进一步发展为完全成熟的癌症,此时逆转的pH梯度会变得更加明显。本综述阐述了我们对pH和NHE1在驱动细胞转化、决定癌症“标志性”特征首次出现过程中的作用的理解,以及针对pH/NHE1的药理学方法如何在癌症发展的最初阶段就为有效治疗开辟新途径。