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Mechanism of Allosteric Coupling into and through the Plasma Membrane by EGFR

机译:EGFR中血浆耦合和通过血浆膜的机制

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摘要

Epidermal growth factor receptor (EGFR) interacts through its extracellular domain with seven different growth factors. These factors induce different structures within the cytoplasmic juxtamembrane (JM) segment of the dimeric receptor and propagate different growth factor-dependent signals to the cell interior. How this process occurs is unknown. Here we apply diverse experimental and computational tools to show that growth factor identity is encoded by the EGFR transmembrane (TM) helix into discrete helix dimer populations that differ in both cross-location and cross-angle. Helix dimers with smaller cross-angles at multiple cross locations are decoded to induce an EGF-type coiled coil in the adjacent JM, whereas helix dimers with larger cross-angles at fewer cross locations induce the TGF-α-type coiled coil. We propose an updated model for how conformational coupling across multiple EGFR domains results in growth factor-specific information transfer, and demonstrate that this model applies to both EGFR and the related receptor ErbB2.
机译:表皮生长因子受体(EGFR)通过其细胞外结构域与七种不同的生长因子相互作用。这些因素诱导二聚体受体的细胞质juxtamembrane(JM)区段内的不同结构,并将不同的生长因子依赖性信号传播到细胞内部。如何发生此过程是未知的。在这里,我们应用不同的实验和计算工具,以表明,生长因子同一性由EGFR跨膜(TM)螺旋编码成离散的螺旋二聚体群,其交叉位置和交叉角度不同。在多个交叉位置处的螺旋二聚体具有较小的交叉角度被解码以诱导相邻JM中的EGF型盘绕线圈,而在较少的交叉位置处具有较大交叉角的螺旋二聚体诱导TGF-α型盘绕线圈。我们提出了一种更新的模型,了解多个EGFR结构域的构象耦合如何导致特定于生长因子的信息转移,并证明该模型适用于EGFR和相关受体ERBB2。

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