Expanding the landscape of oncogenic drivers and treatment options in acral and mucosal melanomas by targeted genomic profiling.

Jacqueline A Turner,Robert J Van Gulick,William A Robinson, Tariq Mughal, Richard P Tobin, Morgan L MacBeth, Blair Holman, Anthony Classon, Stacey M Bagby,Betelehem W Yacob,Sarah J Hartman,Ian Silverman, Victoria M Vorwald, Nicholas Gorden, Rita Gonzalez,Laurie M Gay,Siraj M Ali, Adam Benson,Vincent A Miller, Jeffrey S Ross,Todd M Pitts,Matthew J Rioth,Karl D Lewis,Theresa Medina,Martin D McCarter,Rene Gonzalez, Kasey L Couts

International journal of cancer(2024)

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Abstract
Despite advancements in treating cutaneous melanoma, patients with acral and mucosal (A/M) melanomas still have limited therapeutic options and poor prognoses. We analyzed 156 melanomas (101 cutaneous, 28 acral, and 27 mucosal) using the Foundation One cancer-gene specific clinical testing platform and identified new, potentially targetable genomic alterations (GAs) in specific anatomic sites of A/M melanomas. Using novel pre-clinical models of A/M melanoma, we demonstrate that several GAs and corresponding oncogenic pathways associated with cutaneous melanomas are similarly targetable in A/M melanomas. Other alterations, including MYC and CRKL amplifications, were unique to A/M melanomas and susceptible to indirect targeting using the BRD4 inhibitor JQ1 or Src/ABL inhibitor dasatinib, respectively. We further identified new, actionable A/M-specific alterations, including an inactivating NF2 fusion in a mucosal melanoma responsive to dasatinib in vivo. Our study highlights new molecular differences between cutaneous and A/M melanomas, and across different anatomic sites within A/M, which may change clinical testing and treatment paradigms for these rare melanomas.
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