Department of Medical Oncology, Dana-Farber Cancer Institute, Harvard Medical School, Boston, MA, United States.
Blood. 2010 Oct 20. doi: 10.1182/blood-2009-11-253294.
Multiple myeloma is characterized by frequent chromosomal alterations. Deletion of chr 13, especially band 13q14, is commonly observed in early stages of MM, suggesting the presence of tumor suppressor genes within this region. Here, we functionally validate the role of the microRNAs-15a/16-1 cluster, centered at the deleted region, as TSGs and delineate their downstream target genes in MM. Using "sponge" lentiviral vectors to competitive stably inhibit mature microRNAs in vitro and in vivo, we have documented enhanced proliferative and invasive capacity of cells with stably inhibition of miR-16. Importantly, miR-16 inhibition decreased animal survival in a xenograft model of MM by increasing tumor load and host angiogenesis. Expression profiling analysis of miR-16-deficient cells identified a large number of downstream target genes including FGFR1, PI3KCa, MDM4, VEGFa, as well as secondary affected genes such as JUN and Jag1. We validated designated genes showing binding sites within the conserved 3'-UTR and also within the mRNA coding region as direct miR-16 targets, thus indicating that the miRNAs may have many more targets than anticipated by conventional prediction methods. This loss-of-function system, which mimics the 13q chromosomal deletion, provides a valuable tool to investigate their function in MM pathogenesis and their potential use as therapeutic targets.
多发性骨髓瘤的特征是频繁的染色体改变。13 号染色体缺失,特别是 13q14 带缺失,在 MM 的早期阶段经常观察到,这表明该区域存在肿瘤抑制基因。在这里,我们功能验证了位于缺失区域的 microRNAs-15a/16-1 簇作为 TSG 的作用,并描绘了它们在 MM 中的下游靶基因。使用“海绵”慢病毒载体在体外和体内稳定抑制成熟 microRNAs,我们记录了 miR-16 稳定抑制的细胞增殖和侵袭能力增强。重要的是,miR-16 抑制通过增加肿瘤负荷和宿主血管生成,降低了 MM 异种移植模型中动物的存活率。miR-16 缺陷细胞的表达谱分析鉴定了大量下游靶基因,包括 FGFR1、PI3KCa、MDM4、VEGFa 以及二次受影响的基因,如 JUN 和 Jag1。我们验证了在保守的 3'-UTR 内和 mRNA 编码区内具有结合位点的指定基因作为直接的 miR-16 靶标,这表明这些 miRNA 可能具有比传统预测方法预期更多的靶标。这种模拟 13q 染色体缺失的功能丧失系统为研究它们在 MM 发病机制中的功能及其作为治疗靶点的潜在用途提供了一个有价值的工具。