Oncostatin M Receptor–Targeted Antibodies Suppress STAT3 Signaling and Inhibit Ovarian Cancer Growth

肿瘤抑制因子 癌症研究 卵巢癌 生物 细胞生长 癌细胞 受体 细胞生物学 细胞因子 癌症 自分泌信号 信号转导 免疫学 生物化学 白细胞介素6 遗传学
作者
Anjali Geethadevi,Ajay Nair,Deepak Parashar,Zhiqiang Ku,Wei Xiong,Hui Deng,Yongsheng Li,Jasmine George,Donna McAllister,Yunguang Sun,Ishaque P. Kadamberi,Prachi Gupta,Michael B. Dwinell,William H. Bradley,Janet S. Rader,Hallgeir Rui,Robert F. Schwabe,Ningyan Zhang,Sunila Pradeep,Zhiqiang An
出处
期刊:Cancer Research [American Association for Cancer Research]
卷期号:81 (20): 5336-5352 被引量:58
标识
DOI:10.1158/0008-5472.can-21-0483
摘要

Abstract Although patients with advanced ovarian cancer may respond initially to treatment, disease relapse is common, and nearly 50% of patients do not survive beyond five years, indicating an urgent need for improved therapies. To identify new therapeutic targets, we performed single-cell and nuclear RNA-seq data set analyses on 17 human ovarian cancer specimens, revealing the oncostatin M receptor (OSMR) as highly expressed in ovarian cancer cells. Conversely, oncostatin M (OSM), the ligand of OSMR, was highly expressed by tumor-associated macrophages and promoted proliferation and metastasis in cancer cells. Ovarian cancer cell lines and additional patient samples also exhibited elevated levels of OSMR when compared with other cell types in the tumor microenvironment or to normal ovarian tissue samples. OSMR was found to be important for ovarian cancer cell proliferation and migration. Binding of OSM to OSMR caused OSMR–IL6ST dimerization, which is required to produce oncogenic signaling cues for prolonged STAT3 activation. Human monoclonal antibody clones B14 and B21 directed to the extracellular domain of OSMR abrogated OSM-induced OSMR–IL6ST heterodimerization, promoted the internalization and degradation of OSMR, and effectively blocked OSMR-mediated signaling in vitro. Importantly, these antibody clones inhibited the growth of ovarian cancer cells in vitro and in vivo by suppressing oncogenic signaling through OSMR and STAT3 activation. Collectively, this study provides a proof of principle that anti-OSMR antibody can mediate disruption of OSM-induced OSMR–IL6ST dimerization and oncogenic signaling, thus documenting the preclinical therapeutic efficacy of human OSMR antagonist antibodies for immunotherapy in ovarian cancer. Significance: This study uncovers a role for OSMR in promoting ovarian cancer cell proliferation and metastasis by activating STAT3 signaling and demonstrates the preclinical efficacy of antibody-based OSMR targeting for ovarian cancer treatment.
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