College of Biological Science and Engineering, Fuzhou University, Fuzhou, China.
PLoS One. 2013 Apr 24;8(4):e62147. doi: 10.1371/journal.pone.0062147. Print 2013.
A new application of antibodies is to use them as macromolecular chaperones. Protein antigens usually have multiple epitopes, thus, there may be a plurality of antibodies binding to one antigen. However, not all antibodies that bind to one antigen could act as a chaperone. Experiments show that some screened anti-human creatine kinase single chain antibodies (scFV) could assist in the folding and stabilizing of the enzyme, while others could not. We built the model of the single chain antibody (scFv-A4) that increased the stability of human creatine kinase (HCK) by the homology modeling method. Epitopes of human creatine kinase were predicted by computer and then the binding of scFv-A4 and HCK was modeled with computer. The calculation results were further combined with the peptide array membrane experiment results to obtain reliable models for the scFv-A4-HCK complex. Based on the above study we gave an explanation about how scFv-A4 could act as a macromolecular chaperone assisting the folding of HCK. This study provides an approach for predicting antigen-antibody binding mode and also a useful theoretical guidance for the study of antibodies' chaperone-like function.
抗体的一个新应用是将其用作大分子伴侣。蛋白质抗原通常具有多个表位,因此,可能有多个抗体结合到一个抗原上。然而,并非所有与一个抗原结合的抗体都可以作为伴侣。实验表明,一些筛选出的抗人肌酸激酶单链抗体(scFV)可以协助酶的折叠和稳定,而其他则不能。我们通过同源建模方法构建了增加人肌酸激酶(HCK)稳定性的单链抗体(scFv-A4)模型。通过计算机预测人肌酸激酶的表位,然后用计算机模拟 scFv-A4 和 HCK 的结合。计算结果进一步结合肽阵列膜实验结果,获得 scFv-A4-HCK 复合物的可靠模型。基于上述研究,我们解释了 scFv-A4 如何作为一种大分子伴侣协助 HCK 的折叠。该研究为预测抗原-抗体结合模式提供了一种方法,也为研究抗体类似伴侣的功能提供了有用的理论指导。