AI Article Synopsis

  • Genome instability is linked to histone imbalances affecting DNA integrity, and histones must be properly synthesized and modified before entering the nucleus to ensure chromatin assembly.
  • The histone demethylase JMJD1B is essential for supplying adequate histones H3 and H4, and its reduced levels in melanoma cells lead to cytoplasmic accumulation of histones, causing chromatin assembly defects and increased DNA damage.
  • Research shows that JMJD1B knockout in melanoma cells enhances their tumorigenic properties and correlates with higher genome instability, indicating that JMJD1B plays a crucial role in maintaining genome integrity and may act as a safeguard against oncogenic mutations.

Article Abstract

Genome instability relies on preserving the chromatin structure, with any histone imbalances threating DNA integrity. Histone synthesis occurs in the cytoplasm, followed by a maturation process before their nuclear translocation. This maturation involves protein folding and the establishment of post-translational modifications. Disruptions in this pathway hinder chromatin assembly and contribute to genome instability. JMJD1B, a histone demethylase, not only regulates gene expression but also ensures a proper supply of histones H3 and H4 for the chromatin assembly. Reduced JMJD1B levels lead to the cytoplasmic accumulation of histones, causing defects in the chromatin assembly and resulting in DNA damage. To investigate the role of JMJD1B in regulating genome stability and the malignancy of melanoma tumors, we used a JMJD1B/KDM3B knockout in B16F10 mouse melanoma cells to perform tumorigenic and genome instability assays. Additionally, we analyzed the transcriptomic data of human cutaneous melanoma tumors. Our results show the enhanced tumorigenic properties of JMJD1B knockout melanoma cells both in vitro and in vivo. The γH2AX staining, Micrococcal Nuclease sensitivity, and comet assays demonstrated increased DNA damage and genome instability. The JMJD1B expression in human melanoma tumors correlates with a lower mutational burden and fewer oncogenic driver mutations. Our findings highlight JMJD1B's role in maintaining genome integrity by ensuring a proper histone supply to the nucleus, expanding its function beyond gene expression regulation. JMJD1B emerges as a crucial player in preserving genome stability and the development of melanoma, with a potential role as a safeguard against oncogenic mutations.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11476393PMC
http://dx.doi.org/10.3390/ijms251910689DOI Listing

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