Tumor‐Associated Macrophage‐Derived Exosomal LINC01232 Induces the Immune Escape in Glioma by Decreasing Surface MHC‐I Expression

Author:

Li Junjun1,Wang Keshan2,Yang Chao3,Zhu Kai1,Jiang Cheng1,Wang Minjie1,Zhou Zijie1,Tang Nan1,Wang Qiangping1,Wang Siqi4,Shu Pengwei4,Yuan Hongliang5,Xiong Zhiyong1,Li Jinsong6,Liang Tao7,Rao Jin1,Wang Xuan1,Jiang Xiaobing1ORCID

Affiliation:

1. Department of Neurosurgery, Union Hospital Tongji Medical College Huazhong University of Science and Technology 1277 Jiefang Avenue Wuhan Hubei 430022 China

2. Department of Urology Union Hospital Tongji Medical College Huazhong University of Science and Technology 1277 Jiefang Avenue Wuhan Hubei 430022 China

3. Tianjin Institute of Industrial Biotechnology Chinese Academy of Sciences Tianjin Tianjin 300308 China

4. Department of Radiology Union Hospital Tongji Medical College Huazhong University of Science and Technology 1277 Jiefang Avenue Wuhan Hubei 430022 China

5. Department of Ultrasound Union Hospital Tongji Medical College Huazhong University of Science and Technology 1277 Jiefang Avenue Wuhan Hubei 430022 China

6. Department of Thoracic Surgery Union Hospital Tongji Medical College Huazhong University of Science and Technology 1277 Jiefang Avenue Wuhan Hubei 430022 China

7. Department of Clinical Laboratory Union Hospital Tongji Medical College Huazhong University of Science and Technology 1277 Jiefang Avenue Wuhan Hubei 430022 China

Abstract

AbstractTumor‐associated macrophage (TAM) infiltration facilitates glioma malignancy, but the underlying mechanisms remain unclear. Herein, it is reported that TAMs secrete exosomal LINC01232 to induce tumor immune escape. Mechanistically, LINC01232 is found to directly bind E2F2 and promote E2F2 entry into the nucleus; the two synergistically promots the transcription of NBR1. The increase in binding between NBR1 binding and the ubiquitinating MHC‐I protein through the ubiquitin domain causes an increase in the degradation of MHC‐I in autophagolysosomes and a decrease in the expression of MHC‐I on the surface of tumor cells, which in turn led to tumor cell escape from CD8+ CTL immune attack. Disruption of E2F2/NBR1/MHC‐I signaling with shRNAs or blockade with the corresponding antibodies largely abolishes the tumor‐supportive effects of LINC01232 and inhibits tumor growth driven by M2‐type macrophages. Importantly, knockdown of LINC01232 enhances the expression of MHC‐I on the surface of tumor cells and improves the response to reinfusion with CD8+ T cells. This study reveals the existence of critical molecular crosstalk between TAMs and glioma mediates through the LINC01232/E2F2/NBR1/MHC‐I axis to support malignant tumor growth, indicating that targeting this axis may have therapeutic potential.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

General Physics and Astronomy,General Engineering,Biochemistry, Genetics and Molecular Biology (miscellaneous),General Materials Science,General Chemical Engineering,Medicine (miscellaneous)

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