Blocking ACSL6 Compromises Autophagy via FLI1‐Mediated Downregulation of COLs to Radiosensitize Lung Cancer

Author:

Ding Wen1,Bao Shijun1,Zhao Qingwei1,Hao Wei1,Fang Kai2,Xiao Yanlan1,Lin Xiaoting1,Zhao Zhemeng1,Xu Xinyi13,Cui Xinyue1,Yang Xiwen1,Yao Liuhuan1,Jin Hai4,Zhang Kun5,Guo Jiaming1ORCID

Affiliation:

1. Department of Radiation Medicine College of Naval Medicine Naval Medical University Shanghai 200433 P. R. China

2. Department of Medicine College Jiangnan University Wuxi Jiangsu 214000 P. R. China

3. College of Basic Medicine Naval Medical University Shanghai 200433 P. R. China

4. Department of Cardiothoracic Surgery Changhai Hospital Naval Medical University Shanghai 200433 P. R. China

5. Department of Laboratory Medicine and Central Laboratory Sichuan Academy of Medical Sciences Sichuan Provincial People's Hospital School of Medicine University of Electronic Science and Technology of China No. 32, West Second Section, First Ring Road Chengdu Sichuan 610072 P. R. China

Abstract

AbstractLung cancer (LC) is the leading cause of cancer‐related mortality worldwide. Radiotherapy is the main component of LC treatment; however, its efficacy is often limited by radioresistance development, resulting in unsatisfactory clinical outcomes. Here, we found that LC radiosensitivity is up‐regulated by decreased expression of long‐chain acyl‐CoA synthase 6 (ACSL6) after irradiation. Deletion of ACSL6 results in significant elevation of Friend leukemia integration 1 transcription factor (FLI1) and a marked decline of collagens (COLs). Blocking of ACSL6 impairs the tumor growth and upregulates FLI1, which reduces the levels of COLs and compromises irradiation‐induced autophagy, leading to considerable therapeutic benefits during radiotherapy. Moreover, the direct interaction between ACSL6 and FLI1 and engagement between FLI1 and COLs indicates the involvement of the ACSL6‐FLI1‐COL axis. Finally, the potently adjusted autophagy flux reduces its otherwise contributive capability in surviving irradiation stress and leads to satisfactory radiosensitization for LC radiotherapy. These results demonstrate that enhanced ACSL6 expression promotes the aggressive performance of irradiated LC through increased FLI1‐COL‐mediated autophagy flux. Thus, the ACSL6‐FLI1‐Col‐autophagy axis may be targeted to enhance the radiosensitivity of LC and improve the management of LC in radiotherapy.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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