首页> 外文期刊>International journal of biological sciences >ROBO4 deletion ameliorates PAF-mediated skin inflammation via regulating the mRNA translation efficiency of LPCAT1/LPCAT2 and the expression of PAF receptor
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ROBO4 deletion ameliorates PAF-mediated skin inflammation via regulating the mRNA translation efficiency of LPCAT1/LPCAT2 and the expression of PAF receptor

机译:Robo4缺失通过调节LPCAT1 / LPCAT2的mRNA翻译效率和PAF受体的表达,改善PAF介导的皮肤炎症

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The diminished level of platelet-activating factor acetylhydrolase (PAFAH) in milk causes an enhanced level of platelet activating factor (PAF) in the skin, leading to a severe hair loss phenotype during neonatal pup's lactation. The deletion of very-low-density-lipoprotein receptor (VLDLR) prevents the expression and secretion of PAFAH. Here we revealed that deletion of Roundabout 4 (ROBO4) in mice ameliorated hair loss phenotype via reducing PAF concentration in skin. As a consequence, the neonatal pups with ROBO4 deletion lactated by mother with VLDLR deletion showed normal hair phenotype during lactation. In details,ROBO4 deletion reduced the protein but not mRNA expression of two PAF synthetic enzymes LPCAT1/LPCAT2 in macrophage as well as the expression of PAF receptor in both macrophage and ocular tissue, but increased PAFAH protein in serum. On the other hand, RNA expression profile analysis in macrophages revealed that the genes involving in oxidative phosphorylation and ribosome obviously decreased their expression in response to ROBO4 deletion. Moreover, through High Performance Liquid Chromatography (HPLC) analysis, we found that ATP concentration also reduced in ROBO4 deletion macrophages. Because ribosome and energy are very important factors for the mRNA translation, we then tested whether ROBO4 deletion affects LPCAT1/LPCAT2 mRNA translation using polyribosome assay. As expected, the mRNA level of LPCAT1/LPCAT2 significantly decreased in polyribosome in ROBO4 deletion macrophage comparing to that of wild type. Additionally, mice with ROBO4 deletion suppressed LPS-induced IL-6 expression as well as the phosphorylation of p44/42 and p65, but enhanced the AKT phosphorylation. Collectively, ROBO4 deletion alleviates PAF- and LPS-mediated inflammation. And above results also indicate PAF signal might be a crosstalk point of ROBO4- and VLDLR-activated pathways.? The author(s).
机译:牛奶中的血小板活化因子乙酰水平(PAFAH)水平降低导致皮肤中的血小板活化因子(PAF)水平,导致新生儿幼豆哺乳期的严重脱发表型。缺失非常低密度 - 脂蛋白受体(VLDLR)可防止pafah的表达和分泌。在这里,我们透露,通过减少皮肤中的PAF浓度,缺失在小鼠中的循环4(ROBO 4)在小鼠中进行改善的脱发表型。因此,通过母亲与VLDLR缺失哺乳期脱臼的新生儿幼崽在泌乳期间显示正常发型表型。细节,Robo4缺失降低了蛋白质,但在巨噬细胞和眼组织中的PAF受体表达,而不是PAF受体的表达,但在巨噬细胞和眼组织中的表达,而是在巨噬细胞和眼部组织中表达。另一方面,巨噬细胞中的RNA表达谱分析显示,涉及氧化磷酸化和核糖体的基因明显降低了它们的表达响应于ROBO4缺失。此外,通过高性能液相色谱(HPLC)分析,我们发现ATP浓度也降低了ROBO4缺失巨噬细胞。因为核糖体和能量是mRNA翻译的非常重要的因素,然后测试Robo4缺失是否会影响使用多标体测定的LPCAT1 / LPCAT2 mRNA平移。如预期的那样,在Robo4缺失巨噬细胞中,在Grostibosome中,LPCAT1 / LPCAT2的mRNA水平显着降低,巨噬细胞与野生型相比。另外,具有ROBO4缺失的小鼠抑制了LPS诱导的IL-6表达以及P44 / 42和P65的磷酸化,但增强了AKT磷酸化。集体,Robo4删除减轻了PAF和LPS介导的炎症。上面的结果也表示PAF信号可能是Robo4和VLDLR激活途径的串扰点。作者。

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