Peess Carmen, von Proff Leopold, Goller Sabine, Andersson Karl, Gerg Michael, Malmqvist Magnus, Bossenmaier Birgit, Schräml Michael
Roche Diagnostics GmbH, Penzberg, Germany.
Ridgeview Diagnostics AB, Uppsala, Sweden.
PLoS One. 2015 Feb 6;10(2):e0116870. doi: 10.1371/journal.pone.0116870. eCollection 2015.
For the development of efficient anti-cancer therapeutics against the HER receptor family it is indispensable to understand the mechanistic model of the HER receptor activation upon ligand binding. Due to its high complexity the binding mode of Heregulin 1 beta (HRG1β) with its receptor HER3 is so far not understood. Analysis of the interaction of HRG1β with surface immobilized HER3 extracellular domain by time-resolved Surface Plasmon Resonance (SPR) was so far not interpretable using any regular analysis method as the interaction was highly complex. Here, we show that Interaction Map (IM) made it possible to shed light on this interaction. IM allowed deciphering the rate limiting kinetic contributions from complex SPR sensorgrams and thereby enabling the extraction of discrete kinetic rate components from the apparently heterogeneous interactions. We could resolve details from the complex avidity-driven binding mode of HRG1β with HER3 by using a combination of SPR and IM data. Our findings contribute to the general understanding that a major conformational change of HER3 during its activation is induced by a complex sequential HRG1β docking mode.
为了开发针对HER受体家族的高效抗癌疗法,了解配体结合后HER受体激活的机制模型是必不可少的。由于其高度复杂性,目前尚不清楚Heregulin 1 beta(HRG1β)与其受体HER3的结合模式。到目前为止,通过时间分辨表面等离子体共振(SPR)分析HRG1β与表面固定的HER3细胞外结构域的相互作用,由于相互作用高度复杂,使用任何常规分析方法都无法解释。在此,我们表明相互作用图谱(IM)使阐明这种相互作用成为可能。IM允许从复杂的SPR传感图中解读限速动力学贡献,从而能够从明显异质的相互作用中提取离散的动力学速率成分。通过结合SPR和IM数据,我们可以解析HRG1β与HER3复杂的亲和力驱动结合模式的细节。我们的研究结果有助于人们普遍理解,HER3在激活过程中的主要构象变化是由复杂的顺序HRG1β对接模式诱导的。