van Opheusden J H, Wiegel F W, Goldstein B
Biophys Chem. 1984 Oct;20(3):237-48. doi: 10.1016/0301-4622(84)87028-3.
We are interested in the effect of receptor clustering on k+, the diffusion-limited forward rate constant for the binding of a ligand to a cell surface receptor. Here we estimate the reduction in k+ when receptors are clustered in various configurations. We obtain two alternative expressions for the flux of ligands into receptors distributed on a surface. Next we show through a variational principle that these provide both upper and lower bounds on the flux when evaluated for trial concentration functions which satisfy only the boundary conditions of the Laplace equation. We use an analogy with electrostatics to calculate rigorous bounds within approx. 10% of the exact result for a variety of planar clusters of hemispherical receptor sites. We also obtain an exact result for the flux into a spheroidal receptor and use this result to obtain bounds on the flux into certain receptor clusters.
我们感兴趣的是受体聚集对k+的影响,k+是配体与细胞表面受体结合的扩散限制正向速率常数。在此,我们估计当受体以各种构型聚集时k+的降低情况。我们得到了配体流入分布在表面的受体的通量的两种不同表达式。接下来,我们通过变分原理表明,当针对仅满足拉普拉斯方程边界条件的试验浓度函数进行评估时,这些表达式给出了通量的上下界。我们用静电学的类比来计算各种半球形受体位点平面簇的严格边界,其结果与精确结果的误差在约10%以内。我们还得到了配体流入椭球形受体的通量的精确结果,并利用该结果得到了配体流入某些受体簇的通量的边界。