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Downregulation of voltage-dependent anion channel-1 expression by RNA interference prevents cancer cell growth in vivo.

机译:RNA干扰下调电压依赖性阴离子通道1的表达可防止癌细胞在体内生长。

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The voltage-dependent anion channel 1 (VDAC1), located at the outer mitochondrial membrane (OMM), is a key protein in regulating the exchange of ions, nucleotides and a variety of metabolites in and out of the mitochondria. As such, VDAC serves a crucial role in cellular energy maintenance. We have previously shown that silencing VDAC1 expression in T-Rex-293 cells by means of RNA interference using shRNA directed to human (h)VDAC1 resulted in reduced ATP production and a decrease in cell growth. Since cancer cells highly express VDAC, we examined here the effects of shRNA-hVDAC1-mediated silencing of VDAC1 expression on cancer cell growth in an animal model. To this end, HeLa cervical cancer cells were stably transfected with an inducible shRNA plasmid encoding for a sequence directed to hVDAC1. VDAC1 expression in these cells was decreased almost completely. Stably transfected shRNA-hVDAC1 HeLa cells proliferated much slower than did control cells, pointing to VDAC1 expression as being essential for normal growth of HeLa cancer cells. We further studied the ability of hVDAC1 silencing to block cancer cell proliferation in vivo. Nude mice subcutaneously inoculated with stably transfected shRNA-hVDAC1 HeLa cells developed about 40-fold smaller tumors than did mice inoculated with control HeLa cells. Taken together, the results of this study demonstrate, for the first time, the anticancer therapeutic potential of VDAC1 downregulation by means of shRNA.
机译:电压依赖性阴离子通道1(VDAC1)位于线粒体外膜(OMM),是调节线粒体内外离子,核苷酸和多种代谢物交换的关键蛋白。因此,VDAC在蜂窝能量维护中起着至关重要的作用。先前我们已经表明,通过使用针对人(h)VDAC1的shRNA的RNA干扰使T-Rex-293细胞中的VDAC1表达沉默,从而导致ATP产量降低和细胞生长下降。由于癌细胞高度表达VDAC,因此我们在动物模型中检查了shRNA-hVDAC1介导的VDAC1表达沉默对癌细胞生长的影响。为此,用编码针对hVDAC1的序列的诱导型shRNA质粒稳定转染HeLa宫颈癌细胞。这些细胞中的VDAC1表达几乎完全降低。稳定转染的shRNA-hVDAC1 HeLa细胞的增殖比对照细胞慢得多,这表明VDAC1表达对于HeLa癌细胞的正常生长至关重要。我们进一步研究了hVDAC1沉默阻止体内癌细胞增殖的能力。皮下接种稳定转染的shRNA-hVDAC1 HeLa细胞的裸鼠比接种对照HeLa细胞的小鼠小约40倍。两者合计,这项研究的结果首次证明了通过shRNA上调VDAC1的抗癌治疗潜力。

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