Department of Medical Oncology, Fox Chase Cancer Center, Philadelphia, Pennsylvania, United States of America.
PLoS One. 2013;8(1):e54477. doi: 10.1371/journal.pone.0054477. Epub 2013 Jan 25.
Although imatinib mesylate (IM) has transformed the treatment of gastrointestinal stromal tumors (GIST), many patients experience primary/secondary drug resistance. In a previous study, we identified a gene signature, consisting mainly of Kruppel-associated box (KRAB) domain containing zinc finger (ZNF) transcriptional repressors that predict short-term response to IM. To determine if these genes have functional significance, a siRNA library targeting these genes was constructed and applied to GIST cells in vitro. These screens identified seventeen "IM sensitizing genes" in GIST cells (sensitization index (SI) <0.85 ratio of drug/vehicle) with a false discovery rate (FDR) <15%, including twelve ZNF genes, the majority of which are located within the HSA19p12-13.1 locus. These genes were shown to be highly specific to IM and another tyrosine kinase inhibitor (TKI), sunitinib, in GIST cells. In order to determine mechanistically how these ZNFs might be modulating response to IM, RNAi approaches were used to individually silence genes within the predictive signature in GIST cells and expression profiling was performed. Knockdown of the 14 IM-sensitizing genes (10 ZNFs) universally led to downregulation of six genes, including TGFb3, periostin, and NEDD9. These studies implicate a role of KRAB-ZNFs in modulating response to TKIs in GIST.
甲磺酸伊马替尼(IM)改变了胃肠道间质瘤(GIST)的治疗方法,但许多患者仍会出现原发/继发耐药。在之前的研究中,我们发现了一个基因特征,主要由 Kruppel 相关盒(KRAB)结构域含有锌指(ZNF)转录抑制因子组成,该特征可预测对 IM 的短期反应。为了确定这些基因是否具有功能意义,构建了针对这些基因的 siRNA 文库,并在体外应用于 GIST 细胞。这些筛选在 GIST 细胞中鉴定出十七个“IM 增敏基因”(敏感性指数(SI)<0.85 药物/载体比值),假发现率(FDR)<15%,其中包括 12 个 ZNF 基因,其中大多数位于 HSA19p12-13.1 位点内。这些基因在 GIST 细胞中对 IM 和另一种酪氨酸激酶抑制剂(TKI)舒尼替尼具有高度特异性。为了确定这些 ZNF 如何在机制上调节对 IM 的反应,在 GIST 细胞中使用 RNAi 方法单独沉默预测特征中的基因,并进行表达谱分析。敲低 14 个 IM 增敏基因(10 个 ZNF)普遍导致六个基因下调,包括 TGFb3、periostin 和 NEDD9。这些研究表明 KRAB-ZNFs 在调节 GIST 对 TKI 的反应中起作用。