Inactivated cGAS‐STING Signaling Facilitates Endocrine Resistance by Forming a Positive Feedback Loop with AKT Kinase in ER+HER2– Breast Cancer

Author:

Zhang Kai‐Ming12,Zhao De‐Chang12,Li Ze‐Yu34,Wang Yan12,Liu Jian‐Nan5,Du Tian12,Zhou Ling1,Chen Yu‐Hong1,Yu Qi‐Chao34,Chen Qing‐Shan12,Cai Rui‐Zhao12,Zhao Zi‐Xuan12,Shan Jia‐Lu1,Hu Bing‐Xin1,Zhang Hai‐Liang1,Feng Gong‐Kan1,Zhu Xiao‐Feng1,Tang Jun12,Deng Rong1ORCID

Affiliation:

1. State Key Laboratory of Oncology in South China Guangdong Provincial Clinical Research Center for Cancer Collaborative Innovation Center for Cancer Medicine Guangdong Key Laboratory of Nasopharyngeal Carcinoma Diagnosis and Therapy Sun Yat‐sen University Cancer Center Guangzhou 510060 China

2. Department of Breast Oncology Sun Yat‐sen University Cancer Center Guangzhou 510060 China

3. BGI Research Shenzhen 518083 China

4. College of Life Sciences University of Chinese Academy of Sciences Beijing 100049 China

5. Department of Oncology The Affiliated Yantai Yuhuangding Hospital of Qingdao University Yantai Shangdong 264000 China

Abstract

AbstractEndocrine‐resistant ER+HER2– breast cancer (BC) is particularly aggressive and leads to poor clinical outcomes. Effective therapeutic strategies against endocrine‐resistant BC remain elusive. Here, analysis of the RNA‐sequencing data from ER+HER2– BC patients receiving neoadjuvant endocrine therapy and spatial transcriptomics analysis both show the downregulation of innate immune signaling sensing cytosolic DNA, which primarily occurs in endocrine‐resistant BC cells, not immune cells. Indeed, compared with endocrine‐sensitive BC cells, the activity of sensing cytosolic DNA through the cGAS‐STING pathway is attenuated in endocrine‐resistant BC cells. Screening of kinase inhibitor library show that this effect is mainly mediated by hyperactivation of AKT1 kinase, which binds to kinase domain of TBK1, preventing the formation of a trimeric complex TBK1/STING/IRF3. Notably, inactivation of cGAS–STING signaling forms a positive feedback loop with hyperactivated AKT1 to promote endocrine resistance, which is physiologically important and clinically relevant in patients with ER+HER2– BC. Blocking the positive feedback loop using the combination of an AKT1 inhibitor with a STING agonist results in the engagement of innate and adaptive immune signaling and impairs the growth of endocrine‐resistant tumors in humanized mice models, providing a potential strategy for treating patients with endocrine‐resistant BC.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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