GCC2 promotes non-small cell lung cancer growth by maintaining Golgi apparatus integrity and stimulating EGFR signaling pathways

Author:

Hong Sunghoi1,Kim Min Sang1,Jeong Hyesun1,Choi Byeong Hyeon2,Park Jiho1,Shin Gun Seop1,Jung Jik-Han3,Shin Hyunku4,Kang Ka-Won1,Jeon Ok Hwa2,Yu Jewon4,Park Ji-Ho3,Park Yong1,Choi Yeonho1,Kim Hyun Koo2

Affiliation:

1. Korea University

2. Korea University Guro Hospital

3. Korea Advanced Institute of Science and Technology

4. EXoPERT Corporation

Abstract

Abstract Fundamental changes in intracellular processes, such as overactive growth signaling pathways, are common in carcinomas and are targets of many cancer therapeutics. GRIP and coiled-coil containing 2 (GCC2) is a trans-Golgi network (TGN) golgin maintaining Golgi apparatus structure and regulating vesicle transport. Here, we found an aberrant overexpression of GCC2 in non-small cell lung cancer (NSCLC) and conducted shRNA-mediated gene knockdown to investigate the role of GCC2 in NSCLC progression. shRNA-mediated GCC2 knockdown suppressed NSCLC cell growth, migration, stemness, and epithelial-mesenchymal transition (EMT) in vitro and tumor growth in vivo. In addition, GCC2 knockdown suppressed cancer cell exosome secretion and the oncogenic capacity of cancer cell-derived exosomes. Mechanistically, GCC2 inhibition decreased epidermal growth factor receptor (EGFR) expression and downstream growth and proliferation signaling. Furthermore, GCC2 inhibition compromised Golgi structural integrity in cancer cells, indicating a functional role of GCC2 in regulating intracellular trafficking and signaling to promote lung cancer progression. Together, these findings suggest GCC2 as a potential therapeutic target for the treatment of NSCLC.

Publisher

Research Square Platform LLC

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