Springuel Lorraine, Losdyck Elisabeth, Saussoy Pascale, Turcq Béatrice, Mahon François-Xavier, Knoops Laurent, Renauld Jean-Christophe
Ludwig Institute for Cancer Research, Brussels Branch, Avenue Hippocrate 74, 1200, Brussels, Belgium.
de Duve Institute, Université Catholique de Louvain, Brussels, Belgium.
Cell Mol Life Sci. 2016 Dec;73(24):4739-4748. doi: 10.1007/s00018-016-2310-2. Epub 2016 Jul 19.
Genomic instability drives cancer progression by promoting genetic abnormalities that allow for the multi-step clonal selection of cells with growth advantages. We previously reported that the IL-9-dependent TS1 cell line sequentially acquired activating substitutions in JAK1 and JAK3 upon successive selections for growth factor independent and JAK inhibitor-resistant cells, suggestive of a defect in mutation avoidance mechanisms. In the first part of this paper, we discovered that the gene encoding mutL homolog-1 (MLH1), a key component of the DNA mismatch repair system, is silenced by promoter methylation in TS1 cells. By means of stable ectopic expression and RNA interference methods, we showed that the high frequencies of growth factor-independent and inhibitor-resistant cells with activating JAK mutations can be attributed to the absence of MLH1 expression. In the second part of this paper, we confirm the clinical relevance of our findings by showing that chronic myeloid leukemia relapses upon ABL-targeted therapy correlated with a lower expression of MLH1 messenger RNA. Interestingly, the mutational profile observed in our TS1 model, characterized by a strong predominance of T:A>C:G transitions, was identical to the one described in the literature for primitive cells derived from chronic myeloid leukemia patients. Taken together, our observations demonstrate for the first time a causal relationship between MLH1-deficiency and incidence of oncogenic point mutations in tyrosine kinases driving cell transformation and acquired resistance to kinase-targeted cancer therapies.
基因组不稳定性通过促进基因异常来驱动癌症进展,这些基因异常使得具有生长优势的细胞能够进行多步骤克隆选择。我们之前报道过,依赖白细胞介素9的TS1细胞系在连续选择生长因子非依赖性细胞和JAK抑制剂抗性细胞时,JAK1和JAK3会依次获得激活替代,这表明其在避免突变机制方面存在缺陷。在本文的第一部分,我们发现DNA错配修复系统的关键组成部分——编码mutL同源蛋白1(MLH1)的基因在TS1细胞中因启动子甲基化而沉默。通过稳定异位表达和RNA干扰方法,我们表明具有激活JAK突变的生长因子非依赖性细胞和抑制剂抗性细胞的高频率出现可归因于MLH1表达的缺失。在本文的第二部分,我们通过显示ABL靶向治疗后慢性髓性白血病复发与MLH1信使RNA表达降低相关,证实了我们研究结果的临床相关性。有趣的是,我们在TS1模型中观察到的突变谱,其特征是以T:A>C:G转换为主,与文献中描述的慢性髓性白血病患者原始细胞的突变谱相同。综上所述,我们的观察首次证明了MLH1缺陷与驱动细胞转化的酪氨酸激酶致癌点突变发生率以及获得性激酶靶向癌症治疗抗性之间的因果关系。