首页> 美国卫生研究院文献>The Journal of Clinical Investigation >Leukemia inhibitory factor (LIF) stimulates proopiomelanocortin (POMC) expression in a corticotroph cell line. Role of STAT pathway.
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Leukemia inhibitory factor (LIF) stimulates proopiomelanocortin (POMC) expression in a corticotroph cell line. Role of STAT pathway.

机译:白血病抑制因子(LIF)刺激皮质营养细胞系中的proopiomelanocortin(POMC)表达。 STAT途径的作用。

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摘要

We recently described the expression of leukemia inhibitory factor (LIF) in human fetal and murine corticotrophs. LIF and the related cytokine oncostatin M induced basal, and corticotropin-releasing hormone (CRH) induced proopiomelanocortin (POMC) mRNA and ACTH secretion in AtT20 cells. LIF signaling and regulation of POMC gene transcription were therefore tested. Dexamethasone inhibited both basal- and LIF-induced ACTH secretion (P<0.05) and LIF induction of ACTH was also attenuated by immuneutralization of either the LIF receptor (35%, P<0.05) or the gp130 affinity converter (41%, P<0.05). These antisera also attenuated basal ACTH secretion in the absence of added ligand (P<0.05). To examine intrapituitary LIF signaling, phosphorylation of post-receptor substrates was measured. 1 nM LIF rapidly induced tyrosyl phosphorylation of STAT 1 and STAT 3 proteins, as well as tyrosyl phosphorylation of a 115-kD protein, coimmunoprecipitated with STAT 1. The transfected rat POMC promoter -706/+64, fused to the luciferase reporter gene, was induced by LIF, which exerted strong (18-fold) synergy with CRH. Deletion of the major CRH responsive region in POMC (-323/-166) abolished CRH induction of transcription and severely limited LIF synergy. Although 8 bromo cAMP or forskolin modestly enhanced POMC transcription (2.8-fold), LIF markedly potentiated (7.4-fold) these cAMP activators. These results demonstrate that corticotroph LIF action is receptor mediated and involves activation of STAT signaling pathways. LIF potently synergizes with both CRH and cAMP induction of POMC transcription. This novel intrapituitary signaling mechanism may mediate a neuroimmune pituitary interface.
机译:我们最近描述了白血病抑制因子(LIF)在人类胎儿和鼠的皮质营养素中的表达。 LIF和相关的细胞因子抑制素M诱导了AtT20细胞的基础分泌,而促肾上腺皮质激素释放激素(CRH)诱导了原黑皮皮质激素(POMC)mRNA和ACTH分泌。因此测试了LIF信号和POMC基因转录的调控。地塞米松同时抑制基础和LIF诱导的ACTH分泌(P <0.05),LIF受体(35%,P <0.05)或gp130亲和力转化剂(41%,P < 0.05)。在没有添加配体的情况下,这些抗血清也减弱了基础ACTH的分泌(P <0.05)。为了检查垂体LIF信号传导,测量了受体后底物的磷酸化。 1 nM LIF快速诱导STAT 1和STAT 3蛋白的酪氨酰磷酸化,以及115-kD蛋白的酪氨酰磷酸化,与STAT 1共免疫沉淀。转染的大鼠POMC启动子-706 / + 64与荧光素酶报道基因融合,由LIF诱导,它与CRH发挥强大的(18倍)协同作用。 POMC(-323 / -166)中主要CRH反应区的删除消除了CRH转录的诱导,并严重限制了LIF的协同作用。尽管8个溴cAMP或毛喉素适度增强了POMC转录(2.8倍),但LIF显着增强了这些cAMP激活剂(7.4倍)。这些结果表明皮质营养LIF作用是受体介导的,并涉及STAT信号通路的激活。 LIF与CRH和cAMP诱导POMC转录均有效协同作用。这种新颖的垂体内信号传导机制可能介导神经免疫垂体界面。

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