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NXPH4 mediated by m5C contributes to the malignant characteristics of colorectal cancer via inhibiting HIF1A degradation.

Authors :
Yang, Lei
Shi, Jiawen
Zhong, Mingyang
Sun, Pingping
Zhang, Xiaojing
Lian, Zhengyi
Yin, Hang
Xu, Lijun
He, Guyin
Xu, Haiyan
Wu, Han
Wang, Ziheng
Miao, Kai
Huang, Jianfei
Source :
Cellular & Molecular Biology Letters; 8/20/2024, Vol. 29 Issue 1, p1-22, 22p
Publication Year :
2024

Abstract

Objective: Colorectal cancer (CRC) is a form of malignancy that exhibits a comparatively elevated occurrence and fatality rate. Given the relatively slower progress in diagnostic and therapeutic approaches for CRC, there is a need to investigate more accurate and efficient biomarkers. Methods: Core regulatory genes were screened using the TCGA database, and the expression of neurexophilin 4 (NXPH4) and its prognostic implications were validated using tissue microarray staining. The assessment of NXPH4 functions involved a range of experiments, including cellular, organoid, and murine models. Furthermore, a regulatory network between m<superscript>5</superscript>C, NXPH4, and HIF1A was established through several in vitro experiments. Results: The overexpression of NXPH4 is associated with unfavorable prognoses in patients with CRC and hepatocellular carcinoma. Additionally, it facilitates the progression of malignant tumors both in laboratory settings and in living organisms of colorectal carcinoma. Our research also reveals that NXPH4 mRNA can avoid degradation through RNautophagy, relying on an m<superscript>5</superscript>C-dependent mechanism. Moreover, NXPH4 amplifies the HIF signaling pathway and stabilizes HIF1A by competitively binding to PHD4. Conclusions: NXPH4, regulated by m<superscript>5</superscript>C, promotes malignant tumor progression and regulates the HIF pathway. Consequently, targeting NXPH4 through molecular therapies could potentially serve as an efficacious therapeutic strategy for the management of CRC exhibiting elevated NXPH4 expression. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
14258153
Volume :
29
Issue :
1
Database :
Complementary Index
Journal :
Cellular & Molecular Biology Letters
Publication Type :
Academic Journal
Accession number :
179142155
Full Text :
https://doi.org/10.1186/s11658-024-00630-5