Phospholipase PLCE1 promotes transcription and phosphorylation of MCM7 to drive tumor progression in esophageal cancer

Author:

Shi Qi1ORCID,Xu Guixuan1ORCID,Jiang Yuliang2ORCID,Yang Ju3ORCID,Han Xueping4ORCID,Wang Qian5ORCID,Li Ya6ORCID,Zhang Zhiyu1ORCID,Wang Kaige2ORCID,Peng Hao4ORCID,Chen Fangfang7ORCID,Ma Yandi7ORCID,Zhao Linyue8ORCID,Chen Yunzhao5ORCID,Liu Zheng2ORCID,Yang Lan9ORCID,Jia Xingyuan2ORCID,Wen Tao10ORCID,Tong Zhaohui11ORCID,Cui Xiaobin4ORCID,Li Feng1ORCID

Affiliation:

1. Capital Medical University, beijing, China

2. Capital Medical University, China

3. The Comprehensive Cancer Centre of Drum Tower Hospital, Medical School of Nanjing University & Clinical Cancer Institute of Nanjing University, Nanjing, Jiangsu, China

4. Department of Pathology and Key Laboratory for Xinjiang Endemic and Ethnic Diseases, The First Affiliated Hospital, Shihezi University School of Medicine, Shihezi, China

5. Shihezi University School of Medicine, China

6. Shihezi University, shihezi, China

7. First Affiliated Hospital of Shihezi University Medical College, China

8. The Affiliated Hospital of Nanjing University Medical School, China

9. Shihezi University School of Medicine, Shihezi, Xinjiang, China

10. Beijing Chao-Yang Hospital, Beijing, China

11. Beijing Institute of Respiratory Medicine, Beijing Chao-yang Hospital, Capital Medical University, Beijing, China

Abstract

Abstract Phospholipase C epsilon 1 (PLCE1) is a well-established susceptibility gene for esophageal squamous cell carcinoma (ESCC). Identification of the underlying mechanism(s) regulated by PLCE1 could lead to a better understanding of ESCC tumorigenesis. In this study, we found that PLCE1 enhances tumor progression by regulating the replicative helicase MCM7 via two pathways. PLCE1 activated PKCα-mediated phosphorylation of E2F1, which led to the transcriptional activation of MCM7 and miR-106b-5p. The increased expression of miR-106b-5p, located in intron 13 of MCM7, suppressed autophagy and apoptosis by targeting Beclin 1 and RBL2, respectively. Moreover, MCM7 cooperated with the miR-106b-25 cluster to promote PLCE1-dependent cell cycle progression both in vivo and in vitro. Additionally, PLCE1 potentiated the phosphorylation of MCM7 at six threonine residues by the atypical kinase RIOK2, which promoted MCM complex assembly, chromatin loading, and cell cycle progression. Inhibition of PLCE1 or RIOK2 hampered MCM7-mediated DNA replication, resulting in G1/S arrest. Furthermore, MCM7 overexpression in ESCC correlated with poor patient survival. Overall, these findings provide insights into the role of PLCE1 as an oncogenic regulator, a promising prognostic biomarker, and a potential therapeutic target in ESCC.

Publisher

American Association for Cancer Research (AACR)

Subject

Cancer Research,Oncology

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