School of Biological Sciences, University of Reading, Reading, UK.
Department of Biochemistry, CARIM, Maastricht University, Maastricht, The Netherlands.
Sci Rep. 2023 Mar 8;13(1):3906. doi: 10.1038/s41598-023-30884-6.
Receptor diffusion plays an essential role in cellular signalling via the plasma membrane microenvironment and receptor interactions, but the regulation is not well understood. To aid in understanding of the key determinants of receptor diffusion and signalling, we developed agent-based models (ABMs) to explore the extent of dimerisation of the platelet- and megakaryocyte-specific receptor for collagen glycoprotein VI (GPVI). This approach assessed the importance of glycolipid enriched raft-like domains within the plasma membrane that lower receptor diffusivity. Our model simulations demonstrated that GPVI dimers preferentially concentrate in confined domains and, if diffusivity within domains is decreased relative to outside of domains, dimerisation rates are increased. While an increased amount of confined domains resulted in further dimerisation, merging of domains, which may occur upon membrane rearrangements, was without effect. Modelling of the proportion of the cell membrane which constitutes lipid rafts indicated that dimerisation levels could not be explained by these alone. Crowding of receptors by other membrane proteins was also an important determinant of GPVI dimerisation. Together, these results demonstrate the value of ABM approaches in exploring the interactions on a cell surface, guiding the experimentation for new therapeutic avenues.
受体扩散在通过质膜微环境和受体相互作用的细胞信号转导中起着至关重要的作用,但对其调节机制还了解甚少。为了帮助理解受体扩散和信号转导的关键决定因素,我们开发了基于代理的模型(ABM)来探索血小板和巨核细胞特异性胶原蛋白糖蛋白 VI(GPVI)受体的二聚化程度。这种方法评估了富含糖脂的筏状结构域在质膜中的重要性,这些结构域降低了受体的扩散性。我们的模型模拟表明,GPVI 二聚体优先集中在受限的区域,如果与区域外相比,区域内的扩散性降低,则二聚化速率增加。虽然更多的受限区域会导致进一步的二聚化,但在膜重排时可能发生的区域融合没有影响。对构成质膜的细胞膜比例的建模表明,这些因素单独不能解释二聚化水平。其他膜蛋白对受体的拥挤也是 GPVI 二聚化的一个重要决定因素。总之,这些结果表明基于代理的方法在探索细胞表面相互作用方面具有价值,为新的治疗途径的实验提供了指导。