Cortés Maria Luisa, García-Escudero Vega, Hughes Monica, Izquierdo Marta
Departamento de Biología Molecular-Centro de Biología Molecular Severo Ochoa, Universidad Autónoma de Madrid, Facultad de Ciencias, Cantoblanco 28049 Madrid, Spain.
J Gene Med. 2002 Jul-Aug;4(4):407-14. doi: 10.1002/jgm.280.
The killer-suicide system linamarase/linamarin (lis/lin) uses the plant gene linamarase (beta-glucosidase) to convert the cyanogenic glucoside substrate, linamarin, into glucose and cyanide. We have studied the bystander effect associated with this new system mediated by the production of the cyanide ion that diffuses freely across membranes.
Immunofluorescent staining of cells treated with an anti-linamarase antibody allowed us to localize the enzyme within the cells. Flow cytometry was used to determine the sensitivity of different mixtures of cells, C6lis and C6gfp (green), to linamarin as a percentage of cell survival.
We demonstrate here that rat glioblastoma C6 cells carrying the linamarase gene (lis), mixed with naive C6 cells and exposed to linamarin, induce generalized cell death. Cells expressing lis efficiently export linamarase, whereas linamarin enters cells poorly by endocytosis; as a result most of the cyanide is produced outside the cells. The study was facilitated by the presence of the green fluorescent protein (gfp) gene in the bystander population. As few as 10% C6lis-positive cells are sufficient to eliminate the entire cell culture in 96 h.
This bystander mechanism does not preferentially kill toxic metabolite producer cells compared with bystander cells, thus allowing production of sufficient cyanide to cause tumor regression. In this report we confirm the potential of the lis/lin gene therapy system as a powerful tool to eliminate tumors in vivo.
“杀手 - 自杀”系统亚麻苦苷酶/亚麻苦苷(lis/lin)利用植物基因亚麻苦苷酶(β - 葡萄糖苷酶)将氰苷底物亚麻苦苷转化为葡萄糖和氰化物。我们研究了与这个新系统相关的旁观者效应,该效应由可自由跨膜扩散的氰离子产生介导。
用抗亚麻苦苷酶抗体处理细胞后的免疫荧光染色使我们能够在细胞内定位该酶。流式细胞术用于确定不同细胞混合物(C6lis和C6gfp(绿色))对亚麻苦苷的敏感性,以细胞存活百分比表示。
我们在此证明,携带亚麻苦苷酶基因(lis)的大鼠胶质母细胞瘤C6细胞与未处理的C6细胞混合并暴露于亚麻苦苷时,会诱导广泛的细胞死亡。表达lis的细胞能有效地输出亚麻苦苷酶,而亚麻苦苷通过内吞作用进入细胞的效率很低;因此,大部分氰化物在细胞外产生。旁观者群体中绿色荧光蛋白(gfp)基因的存在有助于这项研究。低至10%的C6lis阳性细胞就足以在96小时内消除整个细胞培养物。
与旁观者细胞相比,这种旁观者机制不会优先杀死产生有毒代谢物的细胞,从而能够产生足够的氰化物导致肿瘤消退。在本报告中,我们证实了lis/lin基因治疗系统作为一种在体内消除肿瘤的强大工具的潜力。