Luo J, Zhou J, Zou W, Shen P
National Laboratory of Biomacromolecules, Institute of Biophysics, Academia Sinica, Beijing 100101, China.
J Biochem. 2001 Oct;130(4):553-9. doi: 10.1093/oxfordjournals.jbchem.a003018.
The interactions between adenylate kinase (AK) and a monoclonal antibody against AK (McAb3D3) were examined by means of optical biosensor technology, and the sensograms were fitted to four models using numerical integration algorithms. The interaction of a solution of McAb3D3 with immobilized AK follows a double exponential function and the data fitted well to an inhomogeneous ligand model. The interaction of a solution AK with immobilized McAb3D3 follows a single exponential function and the data fitted well to a pseudo-first order reaction model. The true association constants of AK binding to McAb3D3 in solution were obtained from competition BIAcore measurements. The difference in results obtained with solid-phase BIAcore and competition BIAcore may be due to rebinding of the dissociated analyte to the immobilized surface. The results obtained with BIAcore are compared to those obtained by ELISA methods. We suggest that the best method for analysis of BIAcore data is direct, global fitting of sensorgrams to numerical integration algorithms corresponding to the different possible models for binding.
利用光学生物传感器技术研究了腺苷酸激酶(AK)与抗AK单克隆抗体(McAb3D3)之间的相互作用,并使用数值积分算法将传感图拟合为四种模型。McAb3D3溶液与固定化AK的相互作用遵循双指数函数,数据与非均相配体模型拟合良好。溶液AK与固定化McAb3D3的相互作用遵循单指数函数,数据与伪一级反应模型拟合良好。通过竞争BIAcore测量获得了溶液中AK与McAb3D3结合的真实缔合常数。固相BIAcore和竞争BIAcore获得的结果差异可能是由于解离的分析物重新结合到固定化表面。将BIAcore获得的结果与ELISA方法获得的结果进行比较。我们认为,分析BIAcore数据的最佳方法是将传感图直接整体拟合到与不同可能结合模型相对应的数值积分算法。