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GSK-J4对KDM6B组蛋白去甲基化酶的抑制作用通过调节NF-κB信号传导阻断套细胞淋巴瘤细胞与基质细胞的黏附。

GSK-J4 Inhibition of KDM6B Histone Demethylase Blocks Adhesion of Mantle Cell Lymphoma Cells to Stromal Cells by Modulating NF-κB Signaling.

作者信息

Sadeghi Laia, Wright Anthony P H

机构信息

Division of Biomolecular and Cellular Medicine, Department of Laboratory Medicine, Karolinska Institutet, 17177 Stockholm, Sweden.

出版信息

Cells. 2023 Aug 6;12(15):2010. doi: 10.3390/cells12152010.

Abstract

Multiple signaling pathways facilitate the survival and drug resistance of malignant B-cells by regulating their migration and adhesion to microenvironmental niches. NF-κB pathways are commonly dysregulated in mantle cell lymphoma (MCL), but the exact underlying mechanisms are not well understood. Here, using a co-culture model system, we show that the adhesion of MCL cells to stromal cells is associated with elevated levels of KDM6B histone demethylase mRNA in adherent cells. The inhibition of KDM6B activity, using either a selective inhibitor (GSK-J4) or siRNA-mediated knockdown, reduces MCL adhesion to stromal cells. We showed that KDM6B is required both for the removal of repressive chromatin marks (H3K27me3) at the promoter region of NF-κB encoding genes and for inducing the expression of NF-κB genes in adherent MCL cells. GSK-J4 reduced protein levels of the RELA NF-κB subunit and impaired its nuclear localization. We further demonstrated that some adhesion-induced target genes require both induced NF-κB and KDM6B activity for their induction (e.g., cytokine gene), while others require induction of NF-κB but not KDM6B (e.g., chemokine gene). In conclusion, KDM6B induces the NF-κB pathway at different levels in MCL, thereby facilitating MCL cell adhesion, survival, and drug resistance. KDM6B represents a novel potential therapeutic target for MCL.

摘要

多种信号通路通过调节恶性B细胞向微环境龛位的迁移和黏附来促进其存活和耐药性。核因子-κB(NF-κB)通路在套细胞淋巴瘤(MCL)中通常失调,但其确切的潜在机制尚不完全清楚。在此,我们使用共培养模型系统表明,MCL细胞与基质细胞的黏附与黏附细胞中KDM6B组蛋白去甲基化酶mRNA水平升高有关。使用选择性抑制剂(GSK-J4)或小干扰RNA(siRNA)介导的敲低抑制KDM6B活性,可降低MCL与基质细胞的黏附。我们发现,KDM6B对于去除NF-κB编码基因启动子区域的抑制性染色质标记(H3K27me3)以及诱导黏附的MCL细胞中NF-κB基因的表达都是必需的。GSK-J4降低了RELA NF-κB亚基的蛋白水平并损害了其核定位。我们进一步证明,一些黏附诱导的靶基因的诱导既需要诱导的NF-κB活性也需要KDM6B活性(例如细胞因子基因),而其他一些则只需要诱导的NF-κB活性而不需要KDM6B活性(例如趋化因子基因)。总之,KDM6B在MCL中不同水平诱导NF-κB通路,从而促进MCL细胞的黏附、存活和耐药性。KDM6B代表了MCL一种新的潜在治疗靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/00f7/10416905/6d1d915d0035/cells-12-02010-g001.jpg

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