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组蛋白 H2A1.1.1 作为表观遗传学、炎症和骨髓增生异常综合征间充质基质细胞代谢之间的交汇点。

MacroH2A1.1 as a crossroad between epigenetics, inflammation and metabolism of mesenchymal stromal cells in myelodysplastic syndromes.

机构信息

Department of Medical, Surgical Sciences and Advanced Technologies "G.F. Ingrassia", University of Catania, Catania, Italy.

Division of Hematology, AOU Policlinico, Catania, Italy.

出版信息

Cell Death Dis. 2023 Oct 18;14(10):686. doi: 10.1038/s41419-023-06197-x.

Abstract

Ineffective hematopoiesis is a hallmark of myelodysplastic syndromes (MDS). Hematopoietic alterations in MDS patients strictly correlate with microenvironment dysfunctions, eventually affecting also the mesenchymal stromal cell (MSC) compartment. Stromal cells are indeed epigenetically reprogrammed to cooperate with leukemic cells and propagate the disease as "tumor unit"; therefore, changes in MSC epigenetic profile might contribute to the hematopoietic perturbations typical of MDS. Here, we unveil that the histone variant macroH2A1 (mH2A1) regulates the crosstalk between epigenetics and inflammation in MDS-MSCs, potentially affecting their hematopoietic support ability. We show that the mH2A1 splicing isoform mH2A1.1 accumulates in MDS-MSCs, correlating with the expression of the Toll-like receptor 4 (TLR4), an important pro-tumor activator of MSC phenotype associated to a pro-inflammatory behavior. MH2A1.1-TLR4 axis was further investigated in HS-5 stromal cells after ectopic mH2A1.1 overexpression (mH2A1.1-OE). Proteomic data confirmed the activation of a pro-inflammatory signature associated to TLR4 and nuclear factor kappa B (NFkB) activation. Moreover, mH2A1.1-OE proteomic profile identified several upregulated proteins associated to DNA and histones hypermethylation, including S-adenosylhomocysteine hydrolase, a strong inhibitor of DNA methyltransferase and of the methyl donor S-adenosyl-methionine (SAM). HPLC analysis confirmed higher SAM/SAH ratio along with a metabolic reprogramming. Interestingly, an increased LDHA nuclear localization was detected both in mH2A1.1-OE cells and MDS-MSCs, probably depending on MSC inflammatory phenotype. Finally, coculturing healthy mH2A1.1-OE MSCs with CD34 cells, we found a significant reduction in the number of CD34 cells, which was reflected in a decreased number of colony forming units (CFU-Cs). These results suggest a key role of mH2A1.1 in driving the crosstalk between epigenetic signaling, inflammation, and cell metabolism networks in MDS-MSCs.

摘要

无效造血是骨髓增生异常综合征 (MDS) 的标志。MDS 患者的造血改变与微环境功能障碍严格相关,最终也会影响间充质基质细胞 (MSC) 区室。基质细胞实际上是通过表观遗传重编程与白血病细胞合作并作为“肿瘤单位”传播疾病的;因此,MSC 表观遗传特征的改变可能导致 MDS 中典型的造血紊乱。在这里,我们揭示了组蛋白变体巨组蛋白 A1 (mH2A1) 调节 MDS-MSCs 中表观遗传与炎症之间的串扰,可能影响其造血支持能力。我们表明,mH2A1 剪接异构体 mH2A1.1 在 MDS-MSCs 中积累,与 Toll 样受体 4 (TLR4) 的表达相关,TLR4 是与促炎行为相关的 MSC 表型的重要促肿瘤激活物。在 HS-5 基质细胞中外源性过表达 mH2A1.1 (mH2A1.1-OE) 后,进一步研究了 MH2A1.1-TLR4 轴。蛋白质组学数据证实了与 TLR4 和核因子 kappa B (NFkB) 激活相关的促炎特征的激活。此外,mH2A1.1-OE 蛋白质组学图谱鉴定出几种与 DNA 和组蛋白超甲基化相关的上调蛋白,包括 S-腺苷同型半胱氨酸水解酶,它是 DNA 甲基转移酶和甲基供体 S-腺苷甲硫氨酸 (SAM) 的强烈抑制剂。HPLC 分析证实了较高的 SAM/SAH 比以及代谢重编程。有趣的是,在 mH2A1.1-OE 细胞和 MDS-MSCs 中均检测到 LDHA 核定位增加,这可能取决于 MSC 的炎症表型。最后,将健康的 mH2A1.1-OE MSC 与 CD34 细胞共培养,我们发现 CD34 细胞数量显著减少,这反映在集落形成单位 (CFU-Cs) 的数量减少。这些结果表明 mH2A1.1 在驱动 MDS-MSCs 中表观遗传信号、炎症和细胞代谢网络之间的串扰中起关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6da5/10584900/b2c1e75f3c4f/41419_2023_6197_Fig1_HTML.jpg

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