Drake R R, Pitlyk K, McMasters R A, Mercer K E, Young H, Moyer M P
Department of Biochemistry and Molecular Biology, University of Arkansas for Medical Sciences, Little Rock, Arkansas 72205, USA.
Mol Ther. 2000 Nov;2(5):515-23. doi: 10.1006/mthe.2000.0192.
A novel gap junction-independent mechanism for ganciclovir-mediated bystander effect killing by a herpes simplex virus thymidine kinase (HSV-TK)-expressing SW620 human colon tumor cell line has been characterized. The mechanism of the HSV-TK/GCV bystander effect for many tumor cell lines has been demonstrated to be due to connexin gap junction transfer of phosphorylated ganciclovir (GCV) metabolites; however, there may be as yet uncharacterized connexin-independent mechanisms for the effect. To address this, the bystander effect was further evaluated in a panel of cell lines mixed with homologous HSV-TK-expressing cell lines, a SW620.TK cell line, or a high connexin43-expressing PA-317.TK cell line. Of the 10 cell lines tested, 4 were found to be resistant to bystander effect killing by their homologous HSV-TK-expressing cell lines and the PA-317.TK cells, but all of the cell lines were sensitive to GCV killing when mixed with the SW620.TK cells. The SW620.TK cells were then further evaluated for any indication of extracellular GCV metabolite efflux. Culture medium from SW620.TK cells labeled with [(3)H]GCV was evaluated for the presence of GCV nucleotides by ion-exchange column separation and HPLC analysis. The presence of GCV mono-, di-, and triphosphate metabolites in the medium was detected. Inclusion in the medium of inhibitors of extracellular phosphatases and ecto-ATPases increased the proportion of GCV metabolites recovered. These results indicate that phosphorylated GCV metabolites can be effluxed from SW620.TK cells and that some type of cellular uptake mechanism independent of gap junctions exists for nucleotide entry into neighboring cells.
一种由表达单纯疱疹病毒胸苷激酶(HSV-TK)的SW620人结肠肿瘤细胞系介导的更昔洛韦介导的旁观者效应杀伤的新型非间隙连接机制已被阐明。许多肿瘤细胞系的HSV-TK/GCV旁观者效应机制已被证明是由于磷酸化更昔洛韦(GCV)代谢产物通过连接蛋白间隙连接转移;然而,可能还存在尚未被阐明的与连接蛋白无关的效应机制。为了解决这个问题,在一组与同源表达HSV-TK的细胞系、SW620.TK细胞系或高表达连接蛋白43的PA-317.TK细胞系混合的细胞系中进一步评估了旁观者效应。在所测试的10个细胞系中,发现4个对其同源表达HSV-TK的细胞系和PA-317.TK细胞的旁观者效应杀伤具有抗性,但当与SW620.TK细胞混合时,所有细胞系对GCV杀伤均敏感。然后进一步评估SW620.TK细胞是否有细胞外GCV代谢产物外排的迹象。通过离子交换柱分离和HPLC分析,评估了用[(3)H]GCV标记的SW620.TK细胞的培养基中GCV核苷酸的存在情况。检测到培养基中存在GCV单磷酸、二磷酸和三磷酸代谢产物。在培养基中加入细胞外磷酸酶和外切ATP酶抑制剂可增加回收的GCV代谢产物的比例。这些结果表明,磷酸化的GCV代谢产物可以从SW620.TK细胞中流出,并且存在某种独立于间隙连接之外的细胞摄取机制,使核苷酸能够进入邻近细胞。