Navarrabiomed, Complejo Hospitalario de Navarra (CHN), Universidad Pública de Navarra (UPNA), Instituto de Investigación Sanitaria de Navarra (IdiSNA), Pamplona, Spain.
Manchester Cancer Research Centre, Faculty of Biology, Medicine and Health, University of Manchester, Manchester, UK.
Nat Rev Cancer. 2019 Jul;19(7):377-391. doi: 10.1038/s41568-019-0154-4. Epub 2019 Jun 17.
Malignant melanoma is notorious for its inter- and intratumour heterogeneity, based on transcriptionally distinct melanoma cell phenotypes. It is thought that these distinct phenotypes are plastic in nature and that their transcriptional reprogramming enables heterogeneous tumours both to undergo different stages of melanoma progression and to adjust to drug exposure during treatment. Recent advances in genomic technologies and the rapidly expanding availability of large gene expression datasets have allowed for a refined definition of the gene signatures that characterize these phenotypes and have revealed that phenotype plasticity plays a major role in the resistance to both targeted therapy and immunotherapy. In this Review we discuss the definition of melanoma phenotypes through particular transcriptional states and reveal the prognostic relevance of the related gene expression signatures. We review how the establishment of phenotypes is controlled and which roles phenotype plasticity plays in melanoma development and therapy. Because phenotype plasticity in melanoma bears a great resemblance to epithelial-mesenchymal transition, the lessons learned from melanoma will also benefit our understanding of other cancer types.
恶性黑色素瘤因其转录上不同的黑色素瘤细胞表型而恶名昭著。人们认为这些不同的表型在本质上是有可塑性的,它们的转录重编程使异质性肿瘤既能经历黑色素瘤进展的不同阶段,又能在治疗过程中适应药物暴露。基因组技术的最新进展和大型基因表达数据集的快速扩展,使得对这些表型特征的基因特征进行了更精确的定义,并揭示了表型可塑性在靶向治疗和免疫治疗的耐药性中起着主要作用。在这篇综述中,我们通过特定的转录状态来讨论黑色素瘤表型的定义,并揭示相关基因表达特征的预后相关性。我们回顾了表型的建立是如何受到控制的,以及表型可塑性在黑色素瘤的发生和治疗中扮演了什么角色。由于黑色素瘤中的表型可塑性与上皮-间充质转化非常相似,因此从黑色素瘤中获得的经验也将有助于我们理解其他癌症类型。