Ramsay Emma E, Decollogne Stéphanie, Joshi Swapna, Corti Alessandro, Apte Minoti, Pompella Alfonso, Hogg Philip J, Dilda Pierre J
Lowy Cancer Research Centre and Prince of Wales Clinical School, University of New South Wales , Sydney, New South Wales 2052, Australia.
Mol Pharm. 2014 May 5;11(5):1500-11. doi: 10.1021/mp400664t. Epub 2014 Apr 2.
γ-Glutamyltransferase (γGT) is a cell surface enzyme that catalyzes hydrolysis of the bond linking the glutamate and cysteine residues of glutathione and glutathione-S-conjugates. We have observed that human pancreatic tumor cells and tumor-associated stellate cells express high levels of this enzyme when compared to normal pancreatic epithelial and stellate cells. Detection of the protein in tumor sections correlated with γGT activity on the surface of the cultured tumor and stellate cells. We tested whether the tumor γGT could be employed to deliver a therapeutic to the tumor endothelial cells. GSAO is a glutathione-S-conjugate of a trivalent arsenical that is activated to enter endothelial cells by γGT cleavage of the γ-glutamyl residue. The arsenical moiety triggers proliferation arrest and death of the endothelial cells by targeting the mitochondria. Human pancreatic tumor and stellate cell γGT activated GSAO in culture and γGT activity positively correlated with GSAO-mediated proliferation arrest and death of endothelial cells in Transwell and coculture systems. A soluble form of γGT is found in blood, and we measured the rate of activation of GSAO by this enzyme. We calculated that systemically administered GSAO would circulate through the pancreatic blood supply several times before appreciable activation by normal blood levels of γGT. In support of this finding, tumor γGT activity positively correlated with GSAO-mediated inhibition of pancreatic tumor angiogenesis and tumor growth in mice. Our findings indicate that pancreatic tumor γGT can be used to deliver a therapeutic to the tumor.
γ-谷氨酰转移酶(γGT)是一种细胞表面酶,可催化谷胱甘肽及谷胱甘肽-S-缀合物中连接谷氨酸和半胱氨酸残基的化学键的水解。我们观察到,与正常胰腺上皮细胞和星状细胞相比,人胰腺肿瘤细胞和肿瘤相关星状细胞中该酶的表达水平较高。肿瘤切片中该蛋白的检测结果与培养的肿瘤细胞和星状细胞表面的γGT活性相关。我们测试了肿瘤γGT是否可用于向肿瘤内皮细胞递送治疗药物。GSAO是一种三价砷的谷胱甘肽-S-缀合物,通过γGT裂解γ-谷氨酰残基而被激活进入内皮细胞。砷部分通过靶向线粒体引发内皮细胞的增殖停滞和死亡。人胰腺肿瘤细胞和星状细胞γGT在培养物中激活GSAO,且γGT活性与Transwell和共培养系统中GSAO介导的内皮细胞增殖停滞和死亡呈正相关。血液中存在一种可溶性形式的γGT,我们测量了该酶对GSAO的激活速率。我们计算得出,全身给药的GSAO在被正常血液水平的γGT显著激活之前,会在胰腺血液供应中循环数次。支持这一发现的是,肿瘤γGT活性与GSAO介导的小鼠胰腺肿瘤血管生成抑制和肿瘤生长呈正相关。我们的研究结果表明,胰腺肿瘤γGT可用于向肿瘤递送治疗药物。