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Homocysteine Suppresses the Expression of the Collagen Cross-linker Lysyl Oxidase Involving IL-6, Fli1, and Epigenetic DNA Methylation*

机译:同型半胱氨酸抑制涉及IL-6,Fli1和表观遗传DNA甲基化的胶原交联剂赖氨酰氧化酶的表达*

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摘要

Elevated homocysteine (Hcys) serum levels represent a risk factor for several chronic pathologies, including cardiovascular disease, atherosclerosis, and chronic renal failure, and affect bone development, quality, and homeostasis. Hcys influences the formation of a stable bone matrix directly through the inhibition of the collagen cross-linking enzyme lysyl oxidase (Lox) and, as we have shown recently, by repressing its mRNA expression. The aim of this study was to investigate the mechanisms involved in this process. Through evaluation of gene arrays, quantitative RT-PCR, immunoblots, and ELISA, we identified a Hcys-dependent stimulation of interleukin 6 (IL-6) and genes involved in IL-6/Janus kinase 2 (JAK2)-dependent signal transduction pathways in pre-osteoblastic MC3T3-E1 cells. Moreover, up-regulation of genes essential for epigenetic DNA methylation (DNA (cytosine-5)-methyltransferases and helicase lymphoid-specific (Hells) was observed. Further investigations demonstrated that Hcys increased via IL-6/JAK2 the expression of Fli1 (Friend leukemia virus integration 1), a transcription factor, which we found essential for IL-6-dependent Dnmt1 stimulation. CpG methylation analysis of CpG-rich Lox proximal promoter revealed an increased CpG methylation status after treatment of the cells with Hcys indicating an epigenetic origin for Hcys-dependent Lox repression. Inhibition of the IL-6/JAK2 pathway or of CpG methylation reversed the repressive effect of Hcys on Lox expression. In conclusion, we demonstrate that Hcys stimulates IL-6 synthesis in osteoblasts, which is known to affect bone metabolism via osteoclasts. Furthermore, IL-6 stimulation results via JAK2, Fli1, and Dnmt1 in down-regulation of Lox expression by epigenetic CpG methylation revealing a new mechanism negatively affecting bone matrix formation.
机译:高半胱氨酸(Hcys)血清水平代表几种慢性疾病的危险因素,包括心血管疾病,动脉粥样硬化和慢性肾功能衰竭,并影响骨骼发育,质量和体内平衡。 Hcys通过抑制胶原蛋白交联酶赖氨酰氧化酶(Lox)并直接抑制其mRNA表达,从而直接影响稳定骨基质的形成。这项研究的目的是调查参与此过程的机制。通过评估基因阵列,定量RT-PCR,免疫印迹和ELISA,我们确定了Hcys依赖性白介素6(IL-6)的刺激和涉及IL-6 / Janus激酶2(JAK2)依赖性信号转导通路的基因在成骨前MC3T3-E1细胞中。此外,还观察到表观遗传DNA甲基化(DNA(cytosine-5)-甲基转移酶和解旋酶淋巴样特异性(Hells)必需基因的上调。进一步的研究表明,Hcys通过IL-6 / JAK2增加了Fli1(Friend白血病病毒整合1),一种转录因子,我们发现它对依赖IL-6的Dnmt1刺激至关重要富含CpG的Lox近端启动子的CpG甲基化分析显示,用Hcys处理细胞后CpG甲基化状态增加,表明是表观遗传起源IL-6 / JAK2途径或CpG甲基化的抑制作用逆转了Hcys对Lox表达的抑制作用。总之,我们证明了Hcys刺激成骨细胞中的IL-6合成。通过破骨细胞的骨代谢,此外,JAK2,Fli1和Dnmt1刺激IL-6导致表观遗传CpG甲基化对Lox表达的下调,从而揭示了新的机制无骨症对骨基质形成有负面影响。

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