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HOX 基因在 AML 中的表达调控。

Regulation of HOX gene expression in AML.

机构信息

Robert H. Lurie Comprehensive Cancer Center, Northwestern University, Chicago, IL, USA.

Department of Medicine at the Feinberg School of Medicine, Northwestern University, Chicago, USA.

出版信息

Blood Cancer J. 2024 Mar 7;14(1):42. doi: 10.1038/s41408-024-01004-y.

Abstract

As key developmental regulators, HOX cluster genes have varied and context-specific roles in normal and malignant hematopoiesis. A complex interaction of transcription factors, epigenetic regulators, long non-coding RNAs and chromatin structural changes orchestrate HOX expression in leukemia cells. In this review we summarize molecular mechanisms underlying HOX regulation in clinical subsets of AML, with a focus on NPM1 mutated (NPM1) AML comprising a third of all AML patients. While the leukemia initiating function of the NPM1 mutation is clearly dependent on HOX activity, the favorable treatment responses in these patients with upregulation of HOX cluster genes is a poorly understood paradoxical observation. Recent data confirm FOXM1 as a suppressor of HOX activity and a well-known binding partner of NPM suggesting that FOXM1 inactivation may mediate the effect of cytoplasmic NPM on HOX upregulation. Conversely the residual nuclear fraction of mutant NPM has also been recently shown to have chromatin modifying effects permissive to HOX expression. Recent identification of the menin-MLL interaction as a critical vulnerability of HOX-dependent AML has fueled the development of menin inhibitors that are clinically active in NPM1 and MLL rearranged AML despite inconsistent suppression of the HOX locus. Insights into context-specific regulation of HOX in AML may provide a solid foundation for targeting this common vulnerability across several major AML subtypes.

摘要

作为关键的发育调控因子,HOX 基因簇在正常和恶性造血中具有多样化和特定于背景的作用。转录因子、表观遗传调节剂、长非编码 RNA 和染色质结构变化的复杂相互作用协调白血病细胞中 HOX 的表达。在这篇综述中,我们总结了 HOX 在 AML 临床亚型中调节的分子机制,重点关注占所有 AML 患者三分之一的 NPM1 突变(NPM1)AML。虽然 NPM1 突变的白血病起始功能显然依赖于 HOX 活性,但这些患者对 HOX 簇基因的上调反应良好,这是一个尚未充分理解的矛盾观察结果。最近的数据证实 FOXM1 作为 HOX 活性的抑制剂和 NPM 的已知结合伴侣,表明 FOXM1 失活可能介导细胞质 NPM 对 HOX 上调的影响。相反,突变型 NPM 的残留核部分最近也被证明具有允许 HOX 表达的染色质修饰作用。最近发现 MENIN-MLL 相互作用是 HOX 依赖性 AML 的一个关键脆弱性,这推动了 MENIN 抑制剂的开发,尽管 HOX 基因座的抑制不一致,但 MENIN 抑制剂在 NPM1 和 MLL 重排的 AML 中具有临床活性。对 AML 中 HOX 特定于背景的调节的深入了解可能为靶向几种主要 AML 亚型的这一共同脆弱性提供坚实的基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/915d/10920644/2b702eb2ac00/41408_2024_1004_Fig1_HTML.jpg

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