Chen C Y, King J R
Centre for Mathematical Medicine, Division of Theoretical Mechanics, School of Mathematical Science, The University of Nottingham, Nottingham, UK.
Bull Math Biol. 2006 May;68(4):863-88. doi: 10.1007/s11538-005-9058-4. Epub 2006 Apr 8.
In this paper, we study the effects on G-protein activation of a non-uniform distribution of signalling components. The spatial heterogeneity is attributed to caveolae, a specific membrane microdomain which has been observed to redistribute and concentrate signalling molecules. Diffusive coagulation-fragmentation equations are used to describe the aggregation of caveolin homo-oligomers and the subsequent formation of caveolae. A system of reaction-diffusion equation is thus formulated and, in order to describe the restrictions imposed by caveolae on the movement of receptors and G-protein, a segregation coefficient is introduced which serves to regulate the preference of the species to segregate according to the concentration of caveolae. The results demonstrate that the heterogeneous distribution of the signalling components and the efficiency of G-protein activation can vary significantly, depending on the concentration of caveolae.
在本文中,我们研究了信号成分的非均匀分布对G蛋白激活的影响。空间异质性归因于小窝,这是一种特定的膜微区,已观察到它会重新分布并浓缩信号分子。扩散凝聚-碎片化方程用于描述小窝蛋白同型寡聚体的聚集以及随后小窝的形成。由此建立了一个反应-扩散方程组,并且为了描述小窝对受体和G蛋白移动所施加的限制,引入了一个分离系数,该系数用于根据小窝的浓度调节物种的分离偏好。结果表明,信号成分的异质分布和G蛋白激活的效率可能会因小窝的浓度而有显著差异。