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首页> 外文期刊>Molecular and Cellular Endocrinology >Lipopolysaccharide (LPS) directly suppresses growth hormone receptor (GHR) expression through MyD88-dependent and -independent Toll-like receptor-4/MD2 complex signaling pathways.
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Lipopolysaccharide (LPS) directly suppresses growth hormone receptor (GHR) expression through MyD88-dependent and -independent Toll-like receptor-4/MD2 complex signaling pathways.

机译:脂多糖(LPS)通过MyD88依赖性和非依赖性Toll样受体4 / MD2复合信号通路直接抑制生长激素受体(GHR)的表达。

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INTRODUCTION: Sepsis is associated with growth hormone (GH) insensitivity and in the intact animal the major surface component of the bacterial cell wall, lipopolysaccharide (LPS), inhibits GH receptor (GHR) gene expression. The prevailing explanation for LPS-induced effects on the GHR promoter is that this effect is indirect via generation of cytokines. Our recent studies demonstrate that saturated free fatty acids (FFAs) inhibit the activity of the murine GHR promoter. Saturated FFAs are an essential component of the lipid A moiety of LPS required for biological activity of LPS. HYPOTHESIS: LPS directly modulates the activity of the dominant GHR promoter via interaction with Toll-like receptor(s) (TLR)/MD2 complex and activation of cognate signaling pathway(s). RESULTS: In transient transfection experiments with RAW 264.7 cells which express endogenous TLR4 and MD2, LPS treatment inhibited GHR promoter activity. Co-transfection of dominant negative TLR4 abrogated this effect on GHR promoter activity.In HEK 293T cells, which are devoid of endogenous TLR4 or MD2, ectopic expression of TLR4 and MD2 resulted in LPS-induced inhibition of the GHR promoter activity. The inhibition of GHR promoter activity was demonstrable by 5-6h after exposure to LPS and persisted at 24h. Fatty-acid free LPS failed to elicit a similar effect on the GHR promoter and the effect of LPS was abrogated by Polymyxin B. The essential role of the cofactor MD2 on the effect of LPS on the GHR promoter was established in experiments using ectopic expression of wild type and mutant MD2. Cotransfection of CD14 in these cells failed to alter the effect of LPS on the activity of the GHR promoter. Analysis of cell culture supernatant excluded the possibility that the effect of LPS was secondary to release of cytokines from the transfected cells. The effect of LPS on the endogenous GHR promoter activity and protein expression was confirmed in F442A preadipocyte cells. In HEK 293T cells, ectopic expression of mutant MyD88 or mutant TRIF abrogated the effect of LPS on the GHR promoter, suggesting that the effect of LPS on the GHR promoter was via both MyD88-dependent and -independent pathways. CONCLUSIONS: LPS acts through both MyD88-dependent and -independent TLR4 signaling pathways to directly inhibit GHR gene expression. Our results establish a novel cytokine-independent mechanism for decrease in GHR expression in bacterial sepsis.
机译:简介:败血症与生长激素(GH)不敏感有关,在完整的动物中,细菌细胞壁的主要表面成分脂多糖(LPS)抑制GH受体(GHR)基因的表达。 LPS诱导的GHR启动子作用的主要解释是这种作用是通过细胞因子的产生间接产生的。我们最近的研究表明,饱和游离脂肪酸(FFA)抑制鼠GHR启动子的活性。饱和的FFA是LPS的生物学活性所需的LPS的脂质A部分的必需成分。假设:LPS通过与Toll样受体(TLR)/ MD2复合体的相互作用以及相关信号通路的激活直接调节占优势的GHR启动子的活性。结果:在表达内源性TLR4和MD2的RAW 264.7细胞的瞬时转染实验中,LPS处理抑制了GHR启动子活性。显性阴性TLR4的共转染消除了对GHR启动子活性的这种影响。在没有内源性TLR4或MD2的HEK 293T细胞中,TLR4和MD2的异位表达导致LPS诱导的GHR启动子活性受到抑制。暴露于LPS后5-6h可证明GHR启动子活性受到抑制,并在24h持续存在。不含脂肪酸的LPS未能对GHR启动子产生类似作用,多粘菌素B废除了LPS的作用。辅酶MD2在LPS对GHR启动子的作用中的重要作用是在异位表达LPS的实验中确定的。野生型和突变MD2。在这些细胞中CD14的共转染未能改变LPS对GHR启动子活性的影响。细胞培养上清液的分析排除了LPS的作用继之于转染细胞释放细胞因子的可能性。 LPS对内源性GHR启动子活性和蛋白表达的影响已在F442A前脂肪细胞中得到证实。在HEK 293T细胞中,突变MyD88或突变TRIF的异位表达消除了LPS对GHR启动子的影响,这表明LPS对GHR启动子的影响是通过MyD88依赖性和非依赖性途径进行的。结论:LPS通过MyD88依赖性和非依赖性TLR4信号通路起作用,直接抑制GHR基因表达。我们的结果建立了一种新型的细胞因子非依赖性机制,可降低细菌性败血症中GHR的表达。

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