首页> 美国卫生研究院文献>Endocrinology >Functional Collaboration of Insulin-Like Growth Factor-1 Receptor (IGF-1R) but Not Insulin Receptor (IR) With Acute GH Signaling in Mouse Calvarial Cells
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Functional Collaboration of Insulin-Like Growth Factor-1 Receptor (IGF-1R) but Not Insulin Receptor (IR) With Acute GH Signaling in Mouse Calvarial Cells

机译:胰岛素类似生长因子-1受体(IGF-1R)而非胰岛素受体(IR)的功能协作在小鼠颅盖细胞中具有急性GH信号传导

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摘要

GH signals through the GH receptor (GHR), a cytokine receptor linked to Janus kinase 2 (JAK2). GH activates signal transducer and activator of transcription 5 (STAT5), causing expression of genes including IGF-I. IGF-I binds IGF-I receptor (IGF-IR), a heterotetrameric (α2-β2) tyrosine kinase growth factor receptor similar to insulin receptor (IR). In addition to this GH -> GHR -> IGF-I -> IGF-IR pathway, GH induces a complex including GHR, JAK2, and IGF-IR and deletion of floxed IGF-1R in primary murine calvarial cells with Cre-recombinase-expressing adenovirus (Ad-Cre) desensitizes cells to GH for STAT5 activation and IGF-I mRNA accumulation. Diminished GH-induced STAT5 phosphorylation in Ad-Cre-treated cells is rescued by adenoviruses encoding either IGF-IR or IGF-IR lacking the β-chain intracellular domain. Reasoning that IGF-IR's extracellular portion (α or extracellular β) mediates functional interaction with GH signaling, we pursued reconstitution studies. Although structurally related to IGF-IR, IR expressed adenovirally did not rescue GH-induced STAT5 phosphorylation in Ad-Cre-treated cells. We thus created chimeras, swapping homologous IR extracellular regions into IGF-IR. IR and IGF-IR possess N-terminal L1, cysteine-rich (CR), and L2 α-chain domains. We created Ad-IGF-IR/IR-L1 and Ad-IGF-IR/IR-L1-CR-L2, in which L1 alone or L1, CR, and L2 of IR replace corresponding IGF-IR regions, respectively. Ad-IGF-IR/IR-L1, but not Ad-IGF-IR/IR-L1-CR-L2, rescued GH-induced STAT5 phosphorylation in Ad-Cre-treated cells. Additionally, medium containing a soluble IGF-IR (including only L1-CR-L2) dampened GH-induced STAT5 phosphorylation in calvarial cells and two other GH-responsive cell lines. Thus, an extracellular determinant(s), likely in CR-L2, specifically allows IGF-IR to collaborate with GHR and JAK2 for robust GH-induced acute STAT5 phosphorylation.
机译:GH通过GH受体(GHR)发出信号,GH受体是与Janus激酶2(JAK2)连接的细胞因子受体。 GH激活信号转导子和转录激活子5(STAT5),导致包括IGF-1在内的基因表达。 IGF-1结合IGF-1受体(IGF-1R),IGF-1受体是类似于胰岛素受体(IR)的异四聚体(α2-β2)酪氨酸激酶生长因子受体。除了这种GH-> GHR-> IGF-I-> IGF-IR途径外,GH还通过Cre重组酶-在原代鼠颅盖细胞中诱导了包括GHR,JAK2和IGF-IR在内的复合物的缺失,以及经氧化的IGF-1R的缺失。表达腺病毒(Ad-Cre)的细胞对GH脱敏以激活STAT5和IGF-1 mRNA的积累。通过Ad-Cre处理的细胞中GH诱导的STAT5磷酸化水平降低,可以通过编码IGF-IR或缺乏β链细胞内结构域的IGF-IR的腺病毒来挽救。由于IGF-IR的细胞外部分(α或细胞外β)介导了与GH信号传导的功能相互作用,因此我们进行了重组研究。尽管在结构上与IGF-IR相关,但IR腺病毒表达并未挽救经Ad-Cre处理的细胞中GH诱导的STAT5磷酸化。因此,我们创建了嵌合体,将同源的IR细胞外区域交换为IGF-IR。 IR和IGF-IR具有N端L1,富含半胱氨酸(CR)和L2α链结构域。我们创建了Ad-IGF-IR / IR-L1和Ad-IGF-IR / IR-L1-CR-L2,其中单独的L1或IR的L1,CR和L2分别替换了相应的IGF-IR区。 Ad-IGF-IR / IR-L1,而非Ad-IGF-IR / IR-L1-CR-L2,挽救了Ad-Cre处理的细胞中GH诱导的STAT5磷酸化。此外,含有可溶性IGF-1R(仅包括L1-CR-L2)的培养基可抑制颅盖细胞和其他两个GH反应性细胞系中GH诱导的STAT5磷酸化。因此,可能在CR-L2中的细胞外决定簇特别地允许IGF-1R与GHR和JAK2协作以产生强健的GH诱导的急性STAT5磷酸化。

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