首页> 外文期刊>The Journal of biological chemistry >Anti-microRNA-222 (Anti-miR-222) and -181B Suppress Growth of Tamoxifen-resistant Xenografts in Mouse by Targeting TIMP3 Protein and Modulating Mitogenic Signal
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Anti-microRNA-222 (Anti-miR-222) and -181B Suppress Growth of Tamoxifen-resistant Xenografts in Mouse by Targeting TIMP3 Protein and Modulating Mitogenic Signal

机译:通过靶向TIMP3蛋白和调节促动信号,抗microRNA-222(抗miR-222)和-181b抑制了小鼠中的三氧化抗异种移植物的生长

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We have shown earlier that miR-221 and -222 are up-regulated in tamoxifen-resistant MCF-7 (OHTR) cells and Her2-positive human breast tumors when compared with Her2 negative tumors. In this study, we report markedly enhanced expression of miR-181b in OHTR cells and endocrine-resistant tumors. Further, anti-miR-222 or -181b in combination with tamoxifen suppressed growth of tamoxifen-resistant xenografts in mice. Luciferase reporter assay and expression analysis showed that TIMP3, a tissue metalloproteinase inhibitor, is a common target of miR-221/222 and -181b. In situ hybridization and immunohistochemical analysis demonstrated reciprocal relationships between TIMP3 and miR-221/222/181b expression in primary human breast carcinomas. Ectopic expression of TIMP3 inhibited growth of the OHTR cells, and its depletion in MCF-7 cells reduced sensitivity to tamoxifen in vitro and in vivo. EGF-induced MAPK and AKT phosphorylation were significantly higher in OHTR cells and miR-221/222-overexpressing MCF-7 cells than in control cells, which suggests modulation of mitogenic signaling by TIMP3 and the miRs. On the contrary, phosphoMAPK and phosphoAKT levels were diminished in TIMP3-overexpressing OHTR cells and increased in TIMP3-depleted MCF-7 cells. Low levels of estrogen or tamoxifen elicited similar differences in phosphoMAPK levels in these cells. Reduced levels of TIMP3 facilitated growth of tamoxifen-resistant cells by alleviating its inhibitory effect on ADAM10 and ADAM17, which are critical for OHTR cell growth. In conclusion, miR-221/222 and -181b facilitate growth factor signaling in tamoxifen-resistant breast cancer by down-regulating TIMP3, and corresponding anti-miRs can be used to render these tumors responsive to tamoxifen.
机译:与HER2阴性肿瘤相比,我们之前表明MIR-221和-222在三莫昔芬抗性MCF-7(OHTR)细胞和HER2阳性人乳腺肿瘤中。在这项研究中,我们报告了在OHTR细胞和内分泌抗性肿瘤中显着增强了miR-181b的表达。此外,抗miR-222或-181b与他莫昔芬的组合抑制了小鼠中他莫氧基抗性异种移植物的生长。荧光素酶报告器测定和表达分析表明,TIMP3是组织金属蛋白酶抑制剂,是miR-221/222和-181b的常见靶标。原位杂交和免疫组织化学分析证明了在原发性人乳腺癌中的TIMP3和MIR-221/222 / 181B表达之间的互殖关系。 TiMP3的异位表达抑制OHTR细胞的生长,并且其在MCF-7细胞中的耗竭降低了体外和体内Tamoxifen的敏感性。 EGF诱导的MAPK和AKT磷酸化在OHTR细胞中显着高于MIR-221 / 222-过表达MCF-7细胞,这表明TIMP3和MIR调节促丝瘤信号传导。相反,磷粉粉和磷酸盐水平在TiMp3过表达OHTR细胞中减少,并在TIMP3耗尽的MCF-7细胞中增加。低水平的雌激素或他莫昔芬引发了这些细胞中磷粉粉水平的类似差异。通过减轻对Adam10和Adam17对OHTR细胞生长至关重要的抑制作用,降低TIMP3促进他莫昔芬抗性细胞的生长。总之,MiR-221/222和-181B通过下调TIMP3促进他莫昔芬抗性乳腺癌中的生长因子信号传导,并且相应的抗miR可用于响应于Tamoxifen而使这些肿瘤呈现这些肿瘤。

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