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RBMS1 reflects a distinct microenvironment and promotes tumor progression in ocular melanoma.

Authors :
Yang, Ludi
Wang, Gaoming
Tian, Hao
Jia, Shichong
Wang, Shaoyun
Cui, Ran
Zhuang, Ai
Source :
Experimental Eye Research. Sep2024, Vol. 246, pN.PAG-N.PAG. 1p.
Publication Year :
2024

Abstract

Ocular melanoma, including uveal melanoma (UM) and conjunctival melanoma (CM), is the most common ocular cancer among adults with a high rate of recurrence and poor prognosis. Loss of epigenetic homeostasis disturbed gene expression patterns, resulting in oncogenesis. Herein, we comprehensively analyzed the DNA methylation, transcriptome profiles, and corresponding clinical information of UM patients through multiple machine-learning algorithms, finding that a methylation-driven gene RBMS1 was correlated with poor clinical outcomes of UM patients. RNA-seq and single-cell RNA-seq analyses revealed that RBMS1 reflected diverse tumor microenvironments, where high RBMS1 expression marked an immune active TME. Furthermore, we found that tumor cells were identified to have the higher communication probability in RBMS1+ state. The functional enrichment analysis revealed that RBMS1 was associated with pigment granule and melanosome, participating in cell proliferation as well as apoptotic signaling pathway. Biological experiments were performed and demonstrated that the silencing of RBMS1 inhibited ocular melanoma proliferation and promoted apoptosis. Our study highlighted that RBMS1 reflects a distinct microenvironment and promotes tumor progression in ocular melanoma, contributing to the therapeutic customization and clinical decision-making. • We first demonstrated that a methylation-driven gene named RBMS1 was correlated with poor clinical outcomes. • We validated the expression level and the biological function of RBMS1 in ocular melanoma samples. • We provided evidence for the determination of an individualized therapeutic treatment for ocular melanoma patients. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00144835
Volume :
246
Database :
Academic Search Index
Journal :
Experimental Eye Research
Publication Type :
Academic Journal
Accession number :
179063875
Full Text :
https://doi.org/10.1016/j.exer.2024.109990