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Monitoring the activation state of insulin/insulin-like growth factor-1 hybrid receptors using bioluminescence resonance energy transfer.

机译:使用生物发光共振能量转移监测胰岛素/胰岛素样生长因子-1杂合受体的激活状态。

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In cells expressing both the insulin receptor isoform A (IRA) and the insulin-like growth factor-1 receptor (IGF1R), the presence of hybrid receptors, made up of an alphabeta-IRA chain associated with an alphabeta-IGF1R chain, has been demonstrated. These heterodimers are found in normal cells, and they also seem to play crucial roles in a number of cancers. However, they remain difficult to study, due to the concomitant presence of IRA and IGF1R homodimers. Using bioluminescence resonance energy transfer (BRET), we have developed assays to specifically monitor the activation state of IRA/IGF1R hybrids, both in vitro and in living cells. The first assay allowed the study of ligand-induced conformational changes within hybrid receptors purified from cells cotransfected with one type of receptor fused to Renilla reniformis luciferase (Rluc), and the other type of receptor fused to yellow fluorescent protein (YFP). In these conditions, only hybrid receptors were BRET-competent. In the second assay, the activation state of IRA/IGF1R hybrids was monitored in real time, in living cells, by cotransfection of kinase-dead versions of IRA-Rluc or IGF1R-Rluc, wild-type untagged IRA or IGF1R, and a YFP-tagged soluble version of the substrate-trapping mutant of protein tyrosine phosphatase 1B (YFP-PTP1B-D181A-Cter). In hybrid receptors, trans-phosphorylation of the kinase-dead alphabeta-Rluc moiety by the wild-type alphabeta moiety induced the recruitment of YFP-PTP1B-D181A-Cter, resulting in a hybrid-specific ligand-induced BRET signal. Therefore, both methods allow monitoring of the activity of IRA/IGF1R hybrid receptor and could be used to detect molecules of therapeutic interest for the treatment of cancer.
机译:在同时表达胰岛素受体同种型A(IRA)和胰岛素样生长因子-1受体(IGF1R)的细胞中,杂合受体的存在已由与字母表字母-IGF1R链相关的字母表字母IRA链组成。演示。这些异二聚体存在于正常细胞中,并且在许多癌症中似乎也起着关键作用。然而,由于IRA和IGF1R同型二聚体的同时存在,它们仍然难以研究。使用生物发光共振能量转移(BRET),我们已经开发了可专门监测IRA / IGF1R杂种在体外和在活细胞中的激活状态的分析方法。第一种测定法允许研究杂交受体中配体诱导的构象变化,杂交受体是从一种细胞中纯化的,该细胞与一种与肾形肾病荧光素酶(Rluc)融合的受体以及另一种与黄色荧光蛋白(YFP)融合的受体共转染。在这些条件下,只有杂合受体具有BRET功能。在第二项检测中,通过共转染IRA-Rluc或IGF1R-Rluc的激酶死亡型,野生型未标记IRA或IGF1R和YFP,在活细胞中实时监测IRA / IGF1R杂种的激活状态酪氨酸磷酸酶1B(YFP-PTP1B-D181A-Cter)的底物捕获突变体的标记的可溶性版本。在杂种受体中,野生型字母表部分对激酶死亡的字母表-Rluc部分进行反磷酸化诱导了YFP-PTP1B-D181A-Cter的募集,从而导致了杂交特异性配体诱导的BRET信号。因此,这两种方法均允许监测IRA / IGF1R杂合受体的活性,并可用于检测具有治疗意义的分子以治疗癌症。

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