Uncovering the rewired IAP-JAK regulatory axis as an immune-dependent vulnerability of LKB1-mutant lung cancer
Abstract
Abstract Harnessing the power of immune system to treat cancer has become a core clinical approach. However, rewiring of intrinsic circuitry by genomic alterations enables tumor cells to escape immune surveillance, leading to therapeutic failure. Uncovering the molecular basis of how tumor mutations induce therapeutic resistance may guide the development of intervention approaches to advance precision immunotherapy. Here we report the identification of the Liver Kinase B1 (LKB1)-Inhibitor of Apoptosis Protein (IAP)- Janus Kinase 1 (JAK1) dynamic complex as a molecular determinant for immune response of LKB1-mut lung cancer cells. LKB1 alteration exposes a critical dependency of lung cancer cells on IAP for their immune resistance. Indeed, pharmacological inhibition of IAP re-establishes JAK1-regulated Stimulator of interferon genes (STING) expression and DNA sensing signaling, enhances cytotoxic immune cell infiltration, and augmentes immune-dependent anti-tumor activity in an LKB1-mutant immune-competent mouse model. Thus, IAP-JAK1-targeted strategies, like IAP inhibitors, may offer a promising therapeutic approach to restore the responsiveness of immunologically-cold LKB1-mutant tumors to immune checkpoint inhibitors or STING-directed therapies.
Article Details
Authors (23)
Changfa Shu
Jianfeng Li
State Key Laboratory of Elemento-Organic Chemistry
Jin Rui
Dacheng Fan
Qiankun Niu
Ruiyang Bai
Danielle Cicka
Sean Doyle
Alafate Wahafu
Xi Zheng
Yuhong Du
Andrey A. Ivanov
Deon B. Doxie
Kavita M. Dhodapkar
Jennifer Carlisle
Taofeek Owonikoko
Gabriel Sica
Yuan Liu
Suresh Ramalingam
Madhav. V Dhodapkar
Wei Zhou
Xiulei Mo
Haian Fu