Targeting WDxR motif reprograms immune microenvironment and inhibits hepatocellular carcinoma progression

Author:

Zhang Heng12ORCID,Chen Gang3,Feng Xing4,Song Huiwen5,Meng Lingbing6,Fu Yao7,Yang Jun7,Fan Zhiwen7,Ding Youxiang7,Du Zhijie8ORCID,Wang Jianchao3,Yang Li910,Zhang Jun11,Sun Lixia12,Liu Zhigang12,Zhang Zhiyong1314ORCID,Li Quanhai15,Fan Xiangshan7ORCID

Affiliation:

1. Department of Thoracic Surgery Renmin Hospital of Wuhan University Wuhan China

2. Department of Histology and Embryology, Xiang Ya School of Medicine Central South University Changsha China

3. Department of Pathology Fujian Medical University Cancer Hospital, Fujian Cancer Hospital Fuzhou China

4. Department of Immunobiology Yale University School of Medicine New Haven CT USA

5. Department of Cardiology Jiading District Central Hospital Affiliated Shanghai University of Medicine & Health Sciences Shanghai China

6. Departments of Cardiology, Beijing Hospital, National Center of Gerontology Chinese Academy of Medical Sciences Beijing China

7. Department of Pathology, The Affiliated Drum Tower Hospital Nanjing University Medical School Nanjing China

8. Nanjing Drum Tower Hospital Clinical College of Traditional Chinese and Western Medicine Nanjing University of Chinese Medicine Nanjing China

9. Institute of Digestive Disease China Three Gorges University Yichang China

10. Department of Gastroenterology Yichang Central People's Hospital Yichang China

11. Shenzhen Qianhai Shekou Free Trade Zone Hospital Shenzhen China

12. Department of Hepatological Surgery The Affiliated Wuhu hospital of ECNU Wuhu China

13. Department of Surgery, Robert‐Wood‐Johnson Medical School University Hospital Rutgers University New Brunswick NJ USA

14. National Center for International Research of Biological Targeting Diagnosis and Therapy Guangxi Medical University Nanning China

15. Cell Therapy Laboratory The First Hospital of Hebei Medical University Shijiazhuang China

Abstract

AbstractThe WD‐repeat (WDR) family affects carcinogenesis, but its role in the immune microenvironment is poorly characterized. Although functional loss or gain of WDR6 does not markedly change in vitro proliferative and invasive capacity of HCC cells, its deficiency in hepa1‐6 cells drastically inhibits the growth and lung metastasis of orthotopically implanted tumors in immune‐competent C57BL/6J mice. Mechanistically, WDR6 targets tumor suppressor UVRAG to the CUL4A‐DDB1‐ROC1 E3 ubiquitin ligase complex through a unique WDxR motif and promotes its degradation. This upregulates chromatin accessibility at the TNFα locus by blocking autophagic degradation of p65, elevates intratumoral myeloid‐derived suppressor cell (MDSC) number, and reduces CD8+ T cell infiltration, thereby promoting HCC progression. These immunosuppressive effects are reversed by TNFα blockade. TNFα recruits NF‐κB to activate the transcription of WDR6, establishing a WDR6‐TNFα loop. Clinically, the WDR6/UVRAG/NF‐κB pathway is hyperactivated in HCC, predicting a poor prognosis. Importantly, a WDxR‐like peptide disrupts the WDR6/UVRAG complex and enhances the efficiency of anti‐PD‐L1 against HCC with WDR6 dysregulation.

Funder

National Natural Science Foundation of China

Publisher

Springer Science and Business Media LLC

Subject

Molecular Medicine

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