The Ronald O. Perelman Department of Dermatology, New York University School of Medicine, New York, New York, USA.
J Invest Dermatol. 2012 Jul;132(7):1860-8. doi: 10.1038/jid.2011.451. Epub 2012 May 3.
We examined the microRNA signature that distinguishes the most common melanoma histological subtypes, superficial spreading melanoma (SSM) and nodular melanoma (NM). We also investigated the mechanisms underlying the differential expression of histology-specific microRNAs. MicroRNA array performed on a training cohort of 82 primary melanoma tumors (26 SSM, 56 NM), and nine congenital nevi (CN) revealed 134 microRNAs differentially expressed between SSM and NM (P<0.05). Out of 134 microRNAs, 126 remained significant after controlling for thickness and 31 were expressed at a lower level in SSM compared with both NM and CN. For seven microRNAs (let-7g, miR-15a, miR-16, miR-138, miR-181a, miR-191, and miR-933), the downregulation was associated with selective genomic loss in SSM cell lines and primary tumors, but not in NM cell lines and primary tumors. The lower expression level of six out of seven microRNAs in SSM compared with NM was confirmed by real-time PCR on a subset of cases in the training cohort and validated in an independent cohort of 97 melanoma cases (38 SSM, 59 NM). Our data support a molecular classification in which SSM and NM are two molecularly distinct phenotypes. Therapeutic strategies that take into account subtype-specific alterations might improve the outcome of melanoma patients.
我们研究了区分最常见的黑色素瘤组织学亚型(浅表扩散性黑色素瘤 [SSM] 和结节性黑色素瘤 [NM])的 microRNA 特征。我们还研究了组织学特异性 microRNA 差异表达的潜在机制。在一个由 82 例原发性黑色素瘤肿瘤(26 例 SSM,56 例 NM)和 9 例先天性痣(CN)组成的训练队列中进行 microRNA 阵列分析,发现 SSM 和 NM 之间存在 134 个差异表达的 microRNA(P<0.05)。在控制厚度后,这 134 个 microRNAs 中有 126 个仍然显著,其中 126 个在 SSM 中的表达水平低于 NM 和 CN。对于 7 个 microRNAs(let-7g、miR-15a、miR-16、miR-138、miR-181a、miR-191 和 miR-933),下调与 SSM 细胞系和原发性肿瘤中的选择性基因组缺失相关,但在 NM 细胞系和原发性肿瘤中不相关。在训练队列的一部分病例中通过实时 PCR 对 SSM 中 7 个 microRNAs 中的 6 个进行了确认,在一个包含 97 例黑色素瘤病例(38 例 SSM,59 例 NM)的独立队列中进行了验证。我们的数据支持一种分子分类,其中 SSM 和 NM 是两种具有明显不同表型的分子亚型。考虑到亚型特异性改变的治疗策略可能会改善黑色素瘤患者的预后。