Stephanie J. Wang, Joanne Xiu, Katherine M. Butcher, Brittney K. DeClerck, Gene H. Kim, Justin Moser, Geoffrey T. Gibney, Leonel F. Hernandez-Aya, Jose Lutzky, Farah Abdulla, Kim A. Margolin, Patrícia Abrão Possik, Carla Daniela Robles-Espinoza, Fumito Ito, Gino K. In
{"title":"与皮肤黑色素瘤相比,肢端黄斑性黑色素瘤的综合分析显示免疫激活下调","authors":"Stephanie J. Wang, Joanne Xiu, Katherine M. Butcher, Brittney K. DeClerck, Gene H. Kim, Justin Moser, Geoffrey T. Gibney, Leonel F. Hernandez-Aya, Jose Lutzky, Farah Abdulla, Kim A. Margolin, Patrícia Abrão Possik, Carla Daniela Robles-Espinoza, Fumito Ito, Gino K. In","doi":"10.1111/pcmr.70027","DOIUrl":null,"url":null,"abstract":"<p>Acral lentiginous melanoma (ALM) is a rare and insufficiently understood subtype of melanoma lacking in effective treatment options. Recent work has demonstrated that the response of ALM to immune checkpoint blockade is inferior to that of cutaneous melanoma (CM). Here we performed bulk genomic and transcriptomic sequencing of tumor tissue from 28 ALM and 5692 CM cases. Similar to prior studies, ALM was associated with a significantly lower incidence of point mutations, including in the <i>TERT</i> promoter and <i>BRAF</i>, but increased numbers of gene amplifications, notably of <i>CCND1</i>, <i>HMGA2</i>, and <i>MDM2</i>. Reactome pathway analysis revealed enhancement of keratinization and PI3K/AKT signaling pathways. Overall immunogenicity was decreased in ALM, which possessed lower IFNγ (<i>p</i> < 0.001) and T-cell inflammatory (<i>p</i> = 0.03) pathway scores than CM. Despite higher computationally inferred levels of myeloid dendritic cells (<i>p</i> = 0.006), neoantigen load independent of predicted HLA binding affinity was lower (<i>p</i> < 0.01) in ALM versus CM. Assessment of classical and nonclassical HLA mRNA levels revealed upregulation of HLA-G, suggesting alternative ALM immune evasion pathways in the setting of lower PD-L1 expression (<i>p</i> = 0.005). Additional research is needed to better understand and therapeutically target signaling networks in the ALM tumor microenvironment.</p>","PeriodicalId":219,"journal":{"name":"Pigment Cell & Melanoma Research","volume":"38 3","pages":""},"PeriodicalIF":3.9000,"publicationDate":"2025-05-22","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://onlinelibrary.wiley.com/doi/epdf/10.1111/pcmr.70027","citationCount":"0","resultStr":"{\"title\":\"Comprehensive Profiling of Acral Lentiginous Melanoma Reveals Downregulated Immune Activation Compared to Cutaneous Melanoma\",\"authors\":\"Stephanie J. Wang, Joanne Xiu, Katherine M. Butcher, Brittney K. DeClerck, Gene H. Kim, Justin Moser, Geoffrey T. Gibney, Leonel F. Hernandez-Aya, Jose Lutzky, Farah Abdulla, Kim A. Margolin, Patrícia Abrão Possik, Carla Daniela Robles-Espinoza, Fumito Ito, Gino K. In\",\"doi\":\"10.1111/pcmr.70027\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p>Acral lentiginous melanoma (ALM) is a rare and insufficiently understood subtype of melanoma lacking in effective treatment options. Recent work has demonstrated that the response of ALM to immune checkpoint blockade is inferior to that of cutaneous melanoma (CM). Here we performed bulk genomic and transcriptomic sequencing of tumor tissue from 28 ALM and 5692 CM cases. Similar to prior studies, ALM was associated with a significantly lower incidence of point mutations, including in the <i>TERT</i> promoter and <i>BRAF</i>, but increased numbers of gene amplifications, notably of <i>CCND1</i>, <i>HMGA2</i>, and <i>MDM2</i>. Reactome pathway analysis revealed enhancement of keratinization and PI3K/AKT signaling pathways. Overall immunogenicity was decreased in ALM, which possessed lower IFNγ (<i>p</i> < 0.001) and T-cell inflammatory (<i>p</i> = 0.03) pathway scores than CM. Despite higher computationally inferred levels of myeloid dendritic cells (<i>p</i> = 0.006), neoantigen load independent of predicted HLA binding affinity was lower (<i>p</i> < 0.01) in ALM versus CM. Assessment of classical and nonclassical HLA mRNA levels revealed upregulation of HLA-G, suggesting alternative ALM immune evasion pathways in the setting of lower PD-L1 expression (<i>p</i> = 0.005). 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Comprehensive Profiling of Acral Lentiginous Melanoma Reveals Downregulated Immune Activation Compared to Cutaneous Melanoma
Acral lentiginous melanoma (ALM) is a rare and insufficiently understood subtype of melanoma lacking in effective treatment options. Recent work has demonstrated that the response of ALM to immune checkpoint blockade is inferior to that of cutaneous melanoma (CM). Here we performed bulk genomic and transcriptomic sequencing of tumor tissue from 28 ALM and 5692 CM cases. Similar to prior studies, ALM was associated with a significantly lower incidence of point mutations, including in the TERT promoter and BRAF, but increased numbers of gene amplifications, notably of CCND1, HMGA2, and MDM2. Reactome pathway analysis revealed enhancement of keratinization and PI3K/AKT signaling pathways. Overall immunogenicity was decreased in ALM, which possessed lower IFNγ (p < 0.001) and T-cell inflammatory (p = 0.03) pathway scores than CM. Despite higher computationally inferred levels of myeloid dendritic cells (p = 0.006), neoantigen load independent of predicted HLA binding affinity was lower (p < 0.01) in ALM versus CM. Assessment of classical and nonclassical HLA mRNA levels revealed upregulation of HLA-G, suggesting alternative ALM immune evasion pathways in the setting of lower PD-L1 expression (p = 0.005). Additional research is needed to better understand and therapeutically target signaling networks in the ALM tumor microenvironment.
期刊介绍:
Pigment Cell & Melanoma Researchpublishes manuscripts on all aspects of pigment cells including development, cell and molecular biology, genetics, diseases of pigment cells including melanoma. Papers that provide insights into the causes and progression of melanoma including the process of metastasis and invasion, proliferation, senescence, apoptosis or gene regulation are especially welcome, as are papers that use the melanocyte system to answer questions of general biological relevance. Papers that are purely descriptive or make only minor advances to our knowledge of pigment cells or melanoma in particular are not suitable for this journal. Keywords
Pigment Cell & Melanoma Research, cell biology, melatonin, biochemistry, chemistry, comparative biology, dermatology, developmental biology, genetics, hormones, intracellular signalling, melanoma, molecular biology, ocular and extracutaneous melanin, pharmacology, photobiology, physics, pigmentary disorders