NAT10/ac4C/FOXP1 Promotes Malignant Progression and Facilitates Immunosuppression by Reprogramming Glycolytic Metabolism in Cervical Cancer

Author:

Chen Xiaona12,Hao Yi3,Liu Yong4,Zhong Sheng12,You Yuehua56,Ao Keyi12,Chong Tuotuo12,Luo Xiaomin12,Yin Minuo7,Ye Ming8,He Hui9,Lu Anwei7,Chen Jianjun10,Li Xin12,Zhang Jian1112,Guo Xia12ORCID

Affiliation:

1. Shenzhen Key Laboratory of Viral Oncology; Ministry of Science and Innovation Shenzhen Hospital Southern Medical University Shenzhen Guangdong China

2. The Third School of Clinical Medicine Southern Medical University Guangzhou Guangdong China

3. Department of Ultrasound South China Hospital of Shenzhen University Shenzhen Guangdong China

4. Department of Critical Care Medicine Shenzhen Hospital, Southern Medical University Shenzhen Guangdong China

5. Department of Stomatology Longhua People's Hospital Affiliated with Southern Medical University Shenzhen Guangdong China

6. School of Stomatology Southern Medical University Guangzhou Guangdong China

7. Department of Obstetrics and Gynecology Shenzhen Hospital of Southern Medical University Shenzhen Guangdong China

8. Department of Pathology Affiliated Tumour Hospital of Xinjiang Medical University Urumqi Xinjiang China

9. Department of Pathology Shenzhen Hospital The University of Hong Kong Shenzhen Guangdong China

10. School of Pharmaceutical Sciences Guangdong Provincial Key Laboratory of New Drug Screening Southern Medical University Guangzhou Guangdong China

11. School of Medicine Southern University of Science and Technology Shenzhen Guangdong China

12. Guangdong Provincial Key Laboratory of Cell Microenvironment and Disease Research Shenzhen Guangdong China

Abstract

AbstractImmunotherapy has recently emerged as the predominant therapeutic approach for cervical cancer (CCa), driven by the groundbreaking clinical achievements of immune checkpoint inhibitors (ICIs), such as anti‐PD‐1/PD‐L1 antibodies. N4‐acetylcytidine (ac4C) modification, catalyzed by NAT10, is an important posttranscriptional modification of mRNA in cancers. However, its impact on immunological dysregulation and the tumor immunotherapy response in CCa remains enigmatic. Here, a significant increase in NAT10 expression in CCa tissues is initially observed that is clinically associated with poor prognosis. Subsequently, it is found that HOXC8 activated NAT10 by binding to its promoter, thereby stimulating ac4C modification of FOXP1 mRNA and enhancing its translation efficiency, eventually leading to induction of GLUT4 and KHK expression. Moreover, NAT10/ac4C/FOXP1 axis activity resulted in increased glycolysis and a continuous increase in lactic acid secretion by CCa cells. The lactic acid‐enriched tumor microenvironment (TME) further contributed to amplifying the immunosuppressive properties of tumor‐infiltrating regulatory T cells (Tregs). Impressively, NAT10 knockdown enhanced the efficacy of PD‐L1 blockade‐mediated tumor regression in vivo. Taken together, the findings revealed the oncogenic role of NAT10 in initiating crosstalk between cancer cell glycolysis and immunosuppression, which can be a target for synergistic PD‐1/PD‐L1 blockade immunotherapy in CCa.

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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