Sun Ziqiao, Wu Kun, Feng Chenhan, Lei Xin Gen
Department of Animal Science, Cornell University, Ithaca, NY, 14853, USA.
Department of Animal Science, Cornell University, Ithaca, NY, 14853, USA.
Free Radic Biol Med. 2023 Nov 1;208:708-717. doi: 10.1016/j.freeradbiomed.2023.09.010. Epub 2023 Sep 17.
We have previously shown dysregulated lipid metabolism in tissues of glutathione peroxidase 1 (GPX1) overexpressing (OE) or deficient (KO) mice. This study explored underlying mechanisms of GPX1 in regulating tissue fatty acid (FA) biosynthesis. GPX1 OE, KO, and wild-type (WT) mice (n = 5, male, 3-6 months old) were fed a Se-adequate diet (0.3 mg/kg) and assayed for liver and adipose tissue FA profiles and mRNA levels of key enzymes of FA biosynthesis and redox-responsive transcriptional factors (TFs). These three genotypes of mice (n = 5) were injected intraperitoneally with diquat, ebselen, and N-acetylcysteine (NAC) at 10, 50, and 50 mg/kg of body weight, respectively, and killed at 0 and 12 h after the injections to detect mRNA levels of FA elongases and desaturases and the TFs in the liver and adipose tissue. A luciferase reporter assay with targeted deletions of mouse Elovl3 promoter was performed to determine transcriptional regulations of the gene by GPX1 mimic ebselen in HEK293T cells. Compared with WT, GPX1 OE and KO mice had 9-42% lower (p < 0.05) and 36-161% higher (p < 0.05) concentrations of C20:0, C22:0, and C24:0 in these two tissues, respectively, along with reciprocal increases and decreases (p < 0.05) of Elovl3 transcripts. Ebselen and NAC decreased (p < 0.05), whereas diquat decreased (p < 0.05), Elovl3 transcripts in the two tissues. Overexpression and knockout of GPX1 decreased (p < 0.05) and increased (p < 0.05) ELOVL3 levels in the two tissues, respectively. Three TFs (GABP, SP1, and DBP) were identified to bind the Elovl3 promoter (-1164/+33 base pairs). Deletion of DBP (-98/-86 base pairs) binding domain in the promoter attenuated (13%, p < 0.05) inhibition of ebselen on Elovl3 promoter activation. In summary, GPX1 overexpression down-regulated very long-chain FA biosynthesis via transcriptional inhibition of the Elovl3 promoter activation.
我们之前已经表明,在过表达(OE)或缺乏(KO)谷胱甘肽过氧化物酶1(GPX1)的小鼠组织中,脂质代谢失调。本研究探讨了GPX1在调节组织脂肪酸(FA)生物合成中的潜在机制。给GPX1 OE、KO和野生型(WT)小鼠(n = 5,雄性,3 - 6个月大)喂食硒充足的饮食(0.3 mg/kg),并检测肝脏和脂肪组织的FA谱以及FA生物合成关键酶和氧化还原反应转录因子(TFs)的mRNA水平。分别以10、50和50 mg/kg体重的剂量给这三种基因型的小鼠(n = 5)腹腔注射百草枯、依布硒啉和N - 乙酰半胱氨酸(NAC),并在注射后0和12小时处死,以检测肝脏和脂肪组织中FA延长酶和去饱和酶以及TFs的mRNA水平。进行了靶向缺失小鼠Elovl3启动子的荧光素酶报告基因测定,以确定在HEK293T细胞中依布硒啉模拟GPX1对该基因的转录调控。与WT相比,GPX1 OE和KO小鼠在这两种组织中C20:0、C22:0和C24:0的浓度分别低9 - 42%(p < 0.05)和高36 - 161%(p < 0.05),同时Elovl3转录本呈相反的增减(p < 0.05)。依布硒啉和NAC降低了(p < 0.05)这两种组织中的Elovl3转录本,而百草枯降低了(p < 0.05)这两种组织中的Elovl3转录本。GPX1的过表达和敲除分别降低了(p < 0.05)和增加了(p < 0.05)这两种组织中的ELOVL3水平。鉴定出三种TFs(GABP、SP1和DBP)与Elovl3启动子(-1164 / +33碱基对)结合。启动子中DBP(-98 / -86碱基对)结合结构域的缺失减弱了(13%,p < 0.05)依布硒啉对Elovl3启动子激活作用的抑制。总之,GPX1的过表达通过转录抑制Elovl3启动子激活下调了极长链FA的生物合成。