Dong Ai-Qiang, Kong Min-Jian, Ma Zhi-Yuan, Qian Jian-Fang, Fan Jun-Qiang, Xu Xiao-Hong
Department of Cardiothoracic Surgery, Second Affiliated Hospital, School of Medicine, Zhejiang University, Hangzhou 310009, China.
Zhonghua Yi Xue Za Zhi. 2007 Jun 5;87(21):1506-9.
To study the effects of RNA interference (RNAi)-mediated insulin-like growth factor I receptor (IGF-IR) gene silencing on human lung cancer cells.
Plasmids expressing IGF-IR shRNA1 and IGF-IR shRNA2 were constructed. Human non-small cell lung cancer cells of the line A549 were cultured and transfected with sequence-specific shRNA. RT-PCR was used to monitor the IGF-IR mRNA expression. Western blotting was used to detect the expression of IGF-IR, bcl-2 and caspase-3, associated with apoptosis, and IGF-IR signaling pathways-associated proteins, total and phospho-ERK1/2 and Akt. MTT assay and flow cytometry were used to examine the cell activity and cell cycle. Twelve nude mice were injected subcutaneously with A549 cells, 20 days later the mice were randomly divided into 3 groups to be injected into the tumor with IGF-IR, PBS, or blank plasmid respectively 4 times with the interval of 5 days. Five days after the 4th injection the mice were killed and the tumors were taken out. TUNNEL assay was used to detect the apoptotic cell in the tumor.
RT-PCR showed that the IGF-IR mRNA expression level of the A549 cells transfected with IGF-IR shRNA1 was only 24% +/- 4% that of the A549 cells transfected with blank plasmid (P < 0.05); however, the IGF-IR mRNA expression level of the A549 cells transfected with IGF-IR shRNA2 was 78% +/- 5% that of the A549 cells transfected with blank plasmid (P > 0.05). The IGF-IR protein expression level of the A549 cells of the IGF-IR shRNA1 group was only 10.2% +/- 2.8% that of the A549 cells of the blank plasmid group (P < 0.05). Western blotting showed that the protein expression levels of bcl-2 and caspase-3p20 of the A549 cells of the IGF-IR shRNA1 group were 46% +/- 6% and 156% +/- 8% those of the negative controls (both P < 0.05); however, the protein expression levels of bcl-2 and caspase-3p20 of the A549 cells of the IGF-IR shRNA2 group were not different from those of the negative control cells. The Akt kinase and ERK phosphorylation levels of the A549 cells of the IGF-IR shRNA1 group were 10% and 36% +/- 3% those of the negative control cells respectively (both P < 0.05). Since 48h after the transfection the active cell number of the IGF-IR shRNA1 group was 64% +/- 7% that of the negative group (P < 0.05), and this decrease effect lasted to 72 h after (67% +/- 6% that of the negative cells, P < 0.05). 48 h after the transfection the percentage of cells at G(0)/G(1) phase of the IGF-IR shRNA1 group was 77.5%, significantly higher than that of the negative control group, and the percentages of the cells at S and G(2)/M phases of the IGF-IR shRNA1 group were 15.7% and 7.3% respectively, both significantly lower than those of the negative control group (23.0% and 29.9% respectively). Since the second injection the tumor size of the mice of IGF-IR shRNA group was 40% - 50% that of the PBS group (P < 0.05), and the tumor size of the mice of the PBS group was 90% that of the control group. TUNNEL assay showed that the number of apoptotic cells in the tumors of the IGF-IR shRNA1 group mice was 118 +/- 8/high power, significantly higher than that of the control group (70 +/- 9, P < 0.05).
RNAi technique effectively inhibits the expression of IGF-IR, thus decreasing the NSCLC cell proliferation inducing apoptosis and inhibiting the tumor growth.
研究RNA干扰(RNAi)介导的胰岛素样生长因子I受体(IGF-IR)基因沉默对人肺癌细胞的影响。
构建表达IGF-IR shRNA1和IGF-IR shRNA2的质粒。培养人非小细胞肺癌A549细胞系,并用序列特异性shRNA进行转染。采用RT-PCR监测IGF-IR mRNA表达。用蛋白质免疫印迹法检测与凋亡相关的IGF-IR、bcl-2和caspase-3的表达,以及与IGF-IR信号通路相关的蛋白、总ERK1/2和磷酸化ERK1/2以及Akt。采用MTT法和流式细胞术检测细胞活性和细胞周期。将12只裸鼠皮下注射A549细胞,20天后将小鼠随机分为3组,分别每隔5天向肿瘤内注射IGF-IR、PBS或空白质粒4次。第4次注射后5天处死小鼠,取出肿瘤。采用TUNNEL法检测肿瘤中的凋亡细胞。
RT-PCR显示,转染IGF-IR shRNA1的A549细胞的IGF-IR mRNA表达水平仅为转染空白质粒的A549细胞的24%±4%(P<0.05);然而,转染IGF-IR shRNA2的A549细胞的IGF-IR mRNA表达水平为转染空白质粒的A549细胞的78%±5%(P>0.05)。IGF-IR shRNA1组A549细胞的IGF-IR蛋白表达水平仅为空白质粒组A549细胞的10.2%±2.8%(P<0.05)。蛋白质免疫印迹法显示,IGF-IR shRNA1组A549细胞的bcl-2和caspase-3p20蛋白表达水平分别为阴性对照组的46%±6%和156%±8%(均P<0.05);然而,IGF-IR shRNA2组A549细胞的bcl-2和caspase-3p20蛋白表达水平与阴性对照细胞无差异。IGF-IR shRNA1组A549细胞的Akt激酶和ERK磷酸化水平分别为阴性对照细胞的10%和36%±3%(均P<0.05)。转染后48小时起,IGF-IR shRNA1组的活性细胞数为阴性组的64%±7%(P<0.05),且这种降低作用持续至72小时(为阴性细胞的67%±6%,P<0.05)。转染后48小时,IGF-IR shRNA1组处于G(0)/G(1)期的细胞百分比为77.5%,显著高于阴性对照组,IGF-IR shRNA1组处于S期和G(2)/M期的细胞百分比分别为15.7%和7.3%,均显著低于阴性对照组(分别为23.0%和29.9%)。自第二次注射起,IGF-IR shRNA组小鼠的肿瘤大小为PBS组的40%-50%(P<0.05),PBS组小鼠的肿瘤大小为对照组的90%。TUNNEL法显示,IGF-IR shRNA1组小鼠肿瘤中的凋亡细胞数为118±8/高倍视野,显著高于对照组(70±9,P<0.05)。
RNAi技术有效抑制IGF-IR的表达,从而降低非小细胞肺癌细胞增殖、诱导凋亡并抑制肿瘤生长。