Cardiovascular Research Institute, University of California San Francisco, San Francisco, CA, United States.
Cardiovascular Research Institute, University of California San Francisco, San Francisco, CA, United States; Medical Scientist Training Program, University of California San Francisco, San Francisco, CA, United States.
Methods Enzymol. 2022;667:633-662. doi: 10.1016/bs.mie.2022.03.049. Epub 2022 Apr 20.
Obtaining high-resolution structures of Receptor Tyrosine Kinases that visualize extracellular, transmembrane and intracellular kinase regions simultaneously is an eagerly pursued but still unmet challenge of structural biology. The Human Epidermal Growth Factor Receptor 3 (HER3) that has a catalytically inactive kinase domain (pseudokinase) forms a potent signaling complex upon binding of growth factor neuregulin 1β (NRG1β) and upon dimerization with a close homolog, the HER2 receptor. The HER2/HER3/NRG1β complex is often referred to as an oncogenic driver in breast cancer and is an attractive target for anti-cancer therapies. After overcoming significant hurdles in isolating sufficient amounts of the HER2/HER3/NRG1β complex for structural studies by cryo-electron microscopy (cryo-EM), we recently obtained the first high-resolution structures of the extracellular portion of this complex. Here we describe a step-by-step protocol for obtaining a stable and homogenous HER2/HER3/NRG1β complex for structural studies and our recommendation for collecting and processing cryo-EM data for this sample. We also show improved EM density for the transmembrane and kinase domains of the receptors, which continue to evade structural determination at high resolution. The discussed strategies are tunable and applicable to other membrane receptor complexes.
获得能够同时可视化细胞外、跨膜和细胞内激酶区域的受体酪氨酸激酶的高分辨率结构是结构生物学领域热切追求但尚未实现的挑战。人表皮生长因子受体 3(HER3)具有无催化活性的激酶结构域(假激酶),在与生长因子神经调节蛋白 1β(NRG1β)结合以及与近亲 HER2 受体二聚化后,形成一个有效的信号复合物。HER2/HER3/NRG1β 复合物通常被称为乳腺癌中的致癌驱动因子,是抗癌治疗的一个有吸引力的靶点。在克服了通过低温电子显微镜(cryo-EM)对 HER2/HER3/NRG1β 复合物进行结构研究时分离足够量复合物的重大障碍后,我们最近获得了该复合物的细胞外部分的第一个高分辨率结构。在这里,我们描述了获得稳定且均一的 HER2/HER3/NRG1β 复合物用于结构研究的分步方案,以及我们对该样品收集和处理 cryo-EM 数据的建议。我们还展示了受体的跨膜和激酶结构域的改进的 EM 密度,这些结构域仍然难以以高分辨率确定结构。所讨论的策略是可调的,适用于其他膜受体复合物。