PHF6 promotes the progression of endometrial carcinoma by increasing cancer cells growth and decreasing T‐cell infiltration

Author:

Wang Xiaomin1,Fang Aizhong12,Peng Yichen1,Yu Jianyu1,Yu Chunna1,Xie Jinxuan2,Zheng Yi1ORCID,Song Lairong1,Li Parker3,Li Jia4,Kang Xun1,Lin Yi1ORCID,Li Wenbin1

Affiliation:

1. Cancer Center, Beijing Tiantan Hospital Capital Medical University Beijing China

2. Department of Epidemiology and Health Statistics, School of Public Health Capital Medical University Beijing China

3. Clinical Medicine Shanghai Jiao Tong University School of Medicine Shanghai China

4. Department of Pathology, Beijing Tiantan Hospital Capital Medical University Beijing China

Abstract

AbstractUterine corpus endometrial carcinoma (UCEC) is the most common cancer of the female reproductive tract. The overall survival of advanced and recurrent UCEC patients is still unfavourable nowadays. It is urgent to find a predictive biomarker and block tumorgenesis at an early stage. Plant homeodomain finger protein 6 (PHF6) is a key player in epigenetic regulation, and its alterations lead to various diseases, including tumours. Here, we found that PHF6 expression was upregulated in UCEC tissues compared with normal tissues. The UCEC patients with high PHF6 expression had poor survival than UCEC patients with low PHF6 expression. PHF6 mutation occurred in 12% of UCEC patients, and PHF6 mutation predicted favourable clinical outcome in UCEC patients. Depletion of PHF6 effectively inhibited HEC‐1‐A and KLE cell proliferation in vitro and decreased HEC‐1‐A cell growth in vivo. Furthermore, high PHF6 level indicated a subtype of UCECs characterized by low immune infiltration, such as CD3+ T‐cell infiltration. While knockdown of PHF6 in endometrial carcinoma cells increased T‐cell migration by promoting IL32 production and secretion. Taken together, our findings suggested that PHF6 might play an oncogenic role in UCEC patients. Thus, PHF6 could be a potential biomarker in predicting the prognosis of UCEC patients. Depletion of PHF6 may be a novel therapeutic strategy for UCEC patients.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

Cell Biology,Molecular Medicine

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