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The tethered configuration of the EGF receptor extracellular domain exerts only a limited control of receptor function

机译:EGF受体胞外域的束缚构型仅能有限地控制受体功能

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Quantitative epidermal growth factor (EGF)-binding experiments have shown that the EGF-receptor (EGFR) is displayed on the surface of intact cells in two forms, a minority of high-affinity and a majority of low-affinity EGFRs. On the basis of the three-dimensional structure of the extracellular ligand binding domain of the EGFR, it was proposed that the intramolecularly tethered and autoinhibited configuration corresponds to the low-affinity receptor, whereas the extended configuration accounts for the high-affinity EGFRs on intact cells. Here we test this model by analyzing the properties of EGFRs mutated in the specific regions responsible for receptor autoinhibition and dimerization, respectively. Our results show that mutagenic disruption of the autoinhibitory tether in EGFR results in a decrease in the dissociation rate of EGF without a detectable change in EGFR activation and signaling through EGFR even in response to stimulation with low concentrations of EGF. Mutagenic disruption of the dimerization arm, on the other hand, increased the rate of EGF dissociation and impaired EGFR activation and signaling via the EGFR. This study demonstrates that the extended configuration of EGFR does not account for the apparent high-affinity EGF-binding to EGFR on intact cells. Furthermore, the autoinhibition conferred by the tethered configuration of the extracellular ligand-binding domain provides only a limited control of EGFR function.
机译:定量表皮生长因子(EGF)结合实验表明,EGF受体(EGFR)以两种形式展示在完整细胞表面,少数是高亲和力的EGFR,而大多数是低亲和力的EGFR。基于EGFR的细胞外配体结合域的三维结构,提出分子内束缚和自抑制构型对应于低亲和力受体,而扩展构型解释了完整的高亲和力EGFR细胞。在这里,我们通过分析分别在负责受体自身抑制和二聚化的特定区域中突变的EGFR的特性来测试该模型。我们的研究结果表明,EGFR自身抑制性系链的诱变破坏导致EGF的解离速率降低,即使响应低浓度的EGF刺激,EGFR的激活和通过EGFR的信号传递也没有可检测的变化。另一方面,二聚化臂的诱变破坏会增加EGF的解离速率,并削弱EGFR的激活和通过EGFR的信号传导。这项研究表明,EGFR的扩展构型不能解释完整细胞上与EGFR明显的高亲和性EGF结合。此外,由胞外配体结合域的束缚构型赋予的自抑制作用仅提供了对EGFR功能的有限控制。

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