Yokota Akiko, Tsumoto Kouhei, Shiroishi Mitsunori, Kondo Hidemasa, Kumagai Izumi
Department of Biomolecular Engineering, Graduate School of Engineering, Tohoku University, Aoba-yama 07, Aoba-ku, Sendai 980-8579, Japan.
J Biol Chem. 2003 Feb 14;278(7):5410-8. doi: 10.1074/jbc.M210182200. Epub 2002 Nov 19.
To study the role of hydrogen bonding via interfacial water molecules in protein-protein interactions, we examined the interaction between hen egg white lysozyme (HEL) and its HyHEL-10 variable domain fragment (Fv) antibody. We constructed three antibody mutants (l-Y50F, l-S91A, and l-S93A) and investigated the interactions between the mutant Fvs and HEL. Isothermal titration calorimetry indicated that the mutations significantly decreased the negative enthalpy change (8-25 kJ mol(-1)), despite some offset by a favorable entropy change. X-ray crystallography demonstrated that the complexes had nearly identical structures, including the positions of the interfacial water molecules. Taken together, the isothermal titration calorimetric and x-ray crystallographic results indicate that hydrogen bonding via interfacial water enthalpically contributes to the Fv-HEL interaction despite the partial offset because of entropy loss, suggesting that hydrogen bonding stiffens the antigen-antibody complex.
为了研究通过界面水分子形成的氢键在蛋白质-蛋白质相互作用中的作用,我们检测了鸡蛋清溶菌酶(HEL)与其HyHEL-10可变域片段(Fv)抗体之间的相互作用。我们构建了三个抗体突变体(l-Y50F、l-S91A和l-S93A),并研究了突变型Fv与HEL之间的相互作用。等温滴定量热法表明,尽管有利的熵变抵消了一部分,但这些突变显著降低了负焓变(8 - 25 kJ mol(-1))。X射线晶体学表明,这些复合物具有几乎相同的结构,包括界面水分子的位置。综合来看,等温滴定量热法和X射线晶体学结果表明,尽管由于熵损失存在部分抵消,但通过界面水形成的氢键在焓上有助于Fv-HEL相互作用,这表明氢键使抗原-抗体复合物变硬。