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首页> 外文期刊>Scientific reports. >Hydrogen Sulfide Promotes Bone Homeostasis by Balancing Inflammatory Cytokine Signaling in CBS-Deficient Mice through an Epigenetic Mechanism
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Hydrogen Sulfide Promotes Bone Homeostasis by Balancing Inflammatory Cytokine Signaling in CBS-Deficient Mice through an Epigenetic Mechanism

机译:通过表观遗传机制通过平衡CBS缺陷小鼠中的炎症细胞因子信号来促进硫化氢促进骨稳态

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Previously, we have shown hyperhomocysteinemia (HHcy) to have a detrimental effect on bone remodeling, which is associated with osteoporosis. During transsulfuration, Hcy is metabolized into hydrogen sulfide (H2S), a gasotransmitter molecule known to regulate bone formation. Therefore, in the present study, we examined whether H2S ameliorates HHcy induced epigenetic and molecular alterations leading to osteoporotic bone loss. To test this mechanism, we employed cystathionine-beta-synthase heterozygote knockout mice, fed with a methionine rich diet (CBS+/? +Met), supplemented with H2S-donor NaHS for 8 weeks. Treatment with NaHS, normalizes plasma H2S, and completely prevents trabecular bone loss in CBS+/? mice. Our data showed that HHcy caused inhibition of HDAC3 activity and subsequent inflammation by imbalancing redox homeostasis. The mechanistic study revealed that inflammatory cytokines (IL-6, TNF-α) are transcriptionally activated by an acetylated lysine residue in histone (H3K27ac) of chromatin by binding to its promoter and subsequently regulating gene expression. A blockade of HDAC3 inhibition in CBS+/? mice by HDAC activator ITSA-1, led to the remodeling of histone landscapes in the genome and thereby attenuated histone acetylation-dependent inflammatory signaling. We also confirmed that RUNX2 was sulfhydrated by administration of NaHS. Collectively, restoration of H2S may provide a novel treatment for CBS-deficiency induced metabolic osteoporosis.
机译:以前,我们已经表现出过量抑制因素(HHCy)对骨质重塑产生不利影响,这与骨质疏松症有关。在经血管灌浆期间,HCY被代谢成硫化氢(H2S),该分子被称为调节骨形成的气体转移分子。因此,在本研究中,我们检查了H2S是否改善HHCy诱导的表观遗传和分子改变,导致骨质疏松骨质损失。为了测试该机制,我们使用Cystathionale-β-合酶杂合蛋白敲除小鼠,用富含蛋氨酸的饮食(CBS + / + Met)喂食,补充有H2S-供体Nah 8周。用NaHS处理,标准化血浆H2S,完全防止CBS + /α的小梁骨质损失老鼠。我们的数据显示,HHCY引起HDAC3活性的抑制和随后通过Imbaling Redox稳态的炎症。机械研究表明,通过与其启动子结合和随后调节基因表达,通过染色蛋白组蛋白(H3K27Ac)中的乙酰化赖氨酸残基来通过染色体(H3K27Ac)和随后调节基因表达,通过染色体(H3K27Ac)的氨基化赖氨酸残基来转录激活。在CBS + /α中阻断HDAC3抑制作用通过HDAC活化剂ITSA-1的小鼠导致了基因组中的组蛋白景观的重塑,从而减弱了组蛋白乙酰化依赖性炎症信号传导。我们还证实Runx2通过施用NaHs来硫化。统称,H2S的恢复可为CBS缺乏诱导的代谢骨质疏松症提供新的处理。

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