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A single ligand is sufficient to activate EGFR dimers

机译:单个配体足以激活EGFR二聚体

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摘要

Crystal structures of human epidermal growth factor receptor (EGFR) with bound ligand revealed symmetric, doubly ligated receptor dimers thought to represent physiologically active states. Such complexes fail to rationalize negative cooperativity of epidermal growth factor (EGF) binding to EGFR and the behavior of the ligandless EGFR homolog ErbB2/HER2, however. We report cell-based assays that provide evidence for active, singly ligated dimers of human EGFR and its homolog, ErbB4/HER4. We also report crystal structures of the ErbB4/HER4 extracellular region complexed with its ligand Neuregulin-ip that resolve two types of ErbB dimer when compared to EGFR:Ligand complexes. One type resembles the recently reported asymmetric dimer of Drosophila EGFR with a single high-affinity ligand bound and provides a model for singly ligated human ErbB dimers. These results unify models of vertebrate and invertebrate EGFR/ErbB signaling, imply that the tethered conformation of unliganded ErbBs evolved to prevent crosstalk among ErbBs, and establish a molecular basis for both negative cooperativity of ligand binding to vertebrate ErbBs and the absence of active ErbB2/HER2 homodimers in normal conditions.
机译:具有结合的配体的人表皮生长因子受体(EGFR)的晶体结构揭示了对称的,双重连接的受体二聚体,被认为代表了生理活性状态。但是,此类复合物无法使表皮生长因子(EGF)与EGFR结合的负协同作用以及无配体EGFR同源物ErbB2 / HER2的行为合理化。我们报告了基于细胞的测定,这些测定为人EGFR及其同源物ErbB4 / HER4的活跃,单连接的二聚体提供了证据。我们还报告了与配体神经调节蛋白复合的ErbB4 / HER4细胞外区域的晶体结构,与EGFR:配体复合物相比,它可以解析两种类型的ErbB二聚体。一种类型类似于最近报道的具有单个高亲和力配体结合的果蝇EGFR的不对称二聚体,并提供了单连接人ErbB二聚体的模型。这些结果统一了脊椎动物和无脊椎动物EGFR / ErbB信号传导的模型,暗示未配体的ErbB的束缚构象演变为可防止ErbB之间的串扰,并为配体与脊椎动物ErbBs结合的负协同作用和缺乏活性ErbB2 /的建立了分子基础。正常条件下的HER2同型二聚体。

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    Department of Biophysics and Biophysical Chemistry, Johns Hopkins University School of Medicine, 725 N. Wolfe Street, Baltimore, MD 21205;

    Department of Biophysics and Biophysical Chemistry, Johns Hopkins University School of Medicine, 725 N. Wolfe Street, Baltimore, MD 21205;

    Division of Molecular Biology and Biochemistry, School of Biological Sciences, University of Missouri—Kansas City, 5100 Rockhill Road, Kansas City, MO 64110;

    Department of Biophysics and Biophysical Chemistry, Johns Hopkins University School of Medicine, 725 N. Wolfe Street, Baltimore, MD 21205;

    Department of Biophysics and Biophysical Chemistry, Johns Hopkins University School of Medicine, 725 N. Wolfe Street, Baltimore, MD 21205;

    Department of Biophysics and Biophysical Chemistry, Johns Hopkins University School of Medicine, 725 N. Wolfe Street, Baltimore, MD 21205;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 00:40:24

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