Selective suppression of melanoma lacking IFN-γ pathway by JAK inhibition depends on T cells and host TNF signaling.

Shen, Hongxing; Huang, Fengyuan; Zhang, Xiangmin; Ojo, Oluwagbemiga A; Li, Yuebin; Trummell, Hoa Quang; Anderson, Joshua C; Fiveash, John et al. · Nat Commun · 2022

basic_science · Level V

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Abstract

Therapeutic resistance to immune checkpoint blockers (ICBs) in melanoma patients is a pressing issue, of which tumor loss of IFN-γ signaling genes is a major underlying mechanism. However, strategies of overcoming this resistance mechanism have been largely elusive. Moreover, given the indispensable role of tumor-infiltrating T cells (TILs) in ICBs, little is known about how tumor-intrinsic loss of IFN-γ signaling (IFNγR1<sup>KO</sup>) impacts TILs. Here, we report that IFNγR1<sup>KO</sup> melanomas have reduced infiltration and function of TILs. IFNγR1<sup>KO</sup> melanomas harbor a network of constitutively active protein tyrosine kinases centered on activated JAK1/2. Mechanistically, JAK1/2 activation is mediated by augmented mTOR. Importantly, JAK1/2 inhibition with Ruxolitinib selectively suppresses the growth of IFNγR1<sup>KO</sup> but not scrambled control melanomas, depending on T cells and host TNF. Together, our results reveal an important role of tumor-intrinsic IFN-γ signaling in shaping TILs and manifest a targeted therapy to bypass ICB resistance of melanomas defective of IFN-γ signaling.

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