Ui Mihoko, Tanaka Yoshikazu, Tsumuraya Takeshi, Fujii Ikuo, Inoue Masayuki, Hirama Masahiro, Tsumoto Kouhei
Department of Medical Genome Sciences, Graduate School of Frontier Sciences, The University of Tokyo, Kashiwa 277-8562, Japan.
Mol Biosyst. 2011 Mar;7(3):793-8. doi: 10.1039/c0mb00162g. Epub 2010 Dec 15.
The mechanism by which anti-ciguatoxin antibody 10C9Fab recognizes a fragment of ciguatoxin CTX3C (CTX3C-ABCDE) was investigated by mutational analysis based on structural data. 10C9Fab has an extraordinarily large and deep antigen-binding pocket at the center of its variable region. We mutated several residues located at the antigen-binding pocket to Ala, and kinetic analysis of the interactions between the mutant proteins and the antigen fragment was performed. The results indicate that some residues associated with the rigid antigen-binding pocket are structural hot-spots and that L-N94 is an energetic hot-spot for association of the antibody with the antigen fragment CTX3C-ABCDE, suggesting the importance of structural complementarity and energetic hot-spot interactions for specific recognition of polycyclic ethers.
基于结构数据,通过突变分析研究了抗雪卡毒素抗体10C9Fab识别雪卡毒素CTX3C片段(CTX3C - ABCDE)的机制。10C9Fab在其可变区中心有一个异常大且深的抗原结合口袋。我们将位于抗原结合口袋的几个残基突变为丙氨酸,并对突变蛋白与抗原片段之间的相互作用进行了动力学分析。结果表明,一些与刚性抗原结合口袋相关的残基是结构热点,而L - N94是抗体与抗原片段CTX3C - ABCDE结合的能量热点,这表明结构互补性和能量热点相互作用对于多环醚的特异性识别很重要。