Department of Otolaryngology, University of Pittsburgh School of Medicine, Pittsburgh, PA, USA.
Clin Cancer Res. 2012 Oct 1;18(19):5188-95. doi: 10.1158/1078-0432.CCR-11-2258. Epub 2012 Jul 6.
Recent high-throughput genomic sequencing studies of solid tumors, including head and neck squamous cell carcinoma (SCC), ovarian cancer, lung adenocarcinoma, glioblastoma, breast cancer, and lung SCC, have highlighted DNA mutation as a mechanism for aberrant Notch signaling. A primary challenge of targeting Notch for treatment of solid malignancies is determining whether Notch signaling is cancer promoting or tumor suppressing for a specific cancer. We compiled reported Notch receptor and ligand missense and nonsense mutations to glean insights into aberrant Notch signaling. Frequencies of coding mutations differed for the 4 NOTCH genes. A total of 4.7% of tumors harbored NOTCH1 missense or nonsense mutations. NOTCH2, and NOTCH3 had similar overall mutation rates of 1.5% and 1.3%, respectively, whereas NOTCH4 mutations were rarer. Notch ligand genes were rarely mutated. The combined mutation frequency and position spectra of the 4 Notch paralogs across the different cancers provide an opportunity to begin to illuminate the different contributions of each Notch paralog to each tumor type and to identify opportunities for therapeutic targeting. Notch signaling pathway activators and inhibitors are currently in early clinical development for treatment of solid malignancies. Defining the status and consequences of altered Notch signaling will be important for selection of appropriate treatment.
最近对实体瘤(包括头颈部鳞状细胞癌[SCC]、卵巢癌、肺腺癌、胶质母细胞瘤、乳腺癌和肺 SCC)的高通量基因组测序研究强调了 DNA 突变是 Notch 信号异常的一种机制。针对 Notch 治疗实体恶性肿瘤的主要挑战之一是确定 Notch 信号对特定癌症是促进癌症还是抑制肿瘤。我们编译了 Notch 受体和配体错义及无义突变的报道,以深入了解异常的 Notch 信号。4 个 NOTCH 基因的编码突变频率不同。共有 4.7%的肿瘤携带 NOTCH1 错义或无义突变。NOTCH2 和 NOTCH3 的总体突变率相似,分别为 1.5%和 1.3%,而 NOTCH4 突变较少。Notch 配体基因很少发生突变。不同癌症中 4 个 Notch 旁系同源基因的联合突变频率和位置谱提供了一个机会,可以开始阐明每个 Notch 旁系同源基因对每种肿瘤类型的不同贡献,并确定治疗靶向的机会。 Notch 信号通路激活剂和抑制剂目前处于治疗实体恶性肿瘤的早期临床开发阶段。确定 Notch 信号改变的状态和后果对于选择合适的治疗方法非常重要。