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Demethylation of EHMT1/GLP Protein Reprograms Its Transcriptional Activity and Promotes Prostate Cancer Progression

Title: Demethylation of EHMT1/GLP Protein Reprograms Its Transcriptional Activity and Promotes Prostate Cancer Progression
Authors: Besschetnova, Anna; Han, Wanting; Liu, Mingyu; Gao, Yanfei; Li, Muqing; Wang, Zifeng; Labaf, Maryam; Patalano, Susan; Venkataramani, Kavita; Muriph, Rachel E; Macoska, Jill A; Siegfried, Kellee R; Evans, Jason; Balk, Steven P; Gao, Shuai; Han, Dong; Cai, Changmeng
Source: NYMC Faculty Publications
Publisher Information: Touro Scholar
Publication Year: 2023
Collection: Touro College & University System: Touro Scholar
Subject Terms: Faculty; Medicine and Health Sciences
Description: UNLABELLED: Epigenetic reprogramming, mediated by genomic alterations and dysregulation of histone reader and writer proteins, plays a critical role in driving prostate cancer progression and treatment resistance. However, the specific function and regulation of EHMT1 (also known as GLP) and EHMT2 (also known as G9A), well-known histone 3 lysine 9 methyltransferases, in prostate cancer progression remain poorly understood. Through comprehensive investigations, we discovered that both EHMT1 and EHMT2 proteins have the ability to activate oncogenic transcription programs in prostate cancer cells. Silencing EHMT1/2 or targeting their enzymatic activity with small-molecule inhibitors can markedly decrease prostate cancer cell proliferation and metastasis and . In-depth analysis of posttranslational modifications of EHMT1 protein revealed the presence of methylation at lysine 450 and 451 residues in multiple prostate cancer models. Notably, we found that lysine 450 can be demethylated by LSD1. Strikingly, concurrent demethylation of both lysine residues resulted in a rapid and profound expansion of EHMT1's chromatin binding capacity, enabling EHMT1 to reprogram the transcription networks in prostate cancer cells and activate oncogenic signaling pathways. Overall, our studies provide valuable molecular insights into the activity and function of EHMT proteins during prostate cancer progression. Moreover, we propose that the dual-lysine demethylation of EHMT1 acts as a critical molecular switch, triggering the induction of oncogenic transcriptional reprogramming in prostate cancer cells. These findings highlight the potential of targeting EHMT1/2 and their demethylation processes as promising therapeutic strategies for combating prostate cancer progression and overcoming treatment resistance. SIGNIFICANCE: In this study, we demonstrate that EHMT1 and EHMT2 proteins drive prostate cancer development by transcriptionally activating multiple oncogenic pathways. Mechanistically, the chromatin binding of EHMT1 is ...
Document Type: article in journal/newspaper
Language: unknown
Relation: https://touroscholar.touro.edu/nymc_fac_pubs/4246; https://pubmed.ncbi.nlm.nih.gov/37663929/?myncbishare=nymclib
DOI: 10.1158/2767-9764.CRC-23-0208
Availability: https://touroscholar.touro.edu/nymc_fac_pubs/4246; https://doi.org/10.1158/2767-9764.CRC-23-0208; https://pubmed.ncbi.nlm.nih.gov/37663929/?myncbishare=nymclib
Accession Number: edsbas.170E5F75
Database: BASE