Kilár F, Závodszky P
Eur J Biochem. 1987 Jan 2;162(1):57-61. doi: 10.1111/j.1432-1033.1987.tb10541.x.
To reveal non-covalent interactions between the Fab and Fc regions of IgG molecules the average conformational free-energy change (delta Go), associated with reversible micro-unfoldings, was measured by hydrogen-deuterium exchange for the Fab and Fc fragments and the complete molecule. Human monoclonal IgG1 and pooled IgG samples were used in these experiments. Hydrogen-deuterium exchange data were summarized and compared in the form of exchange relaxation spectra. The experimentally observed relaxation spectrum of intact IgG could not be deduced by weighted summation of spectra measured for Fab and Fc fragments. A comparison of the measured and calculated data revealed a 5-kJ/mol increase in the conformational free energy upon splitting the IgG molecule into two Fab and Fc pieces, i.e. an increase of conformational mobility occurred. This change can be explained either by related fluctuation patterns of the Fab and Fc pieces in the intact molecule or by a shielding effect on the contact surfaces. Both interpretations suppose non-covalent interactions between Fab and Fc that can be a means of information transduction between recognition and effector sites. The pH dependence of the hydrogen-deuterium exchange also indicates interactions between the Fab and Fc regions. A shift in the relaxation spectra of the Fab fragment was observed between pH 8.2 and 7.3 revealing destabilization of the structure at lower pH. This effect is absent in the intact molecule, reflecting interactions that stabilize the Fab structure. Comparison of the relaxation spectra of Fab and Fc shows a difference of about 10 kJ/mol in the microstability of these fragments: the Fab part possesses more conformational flexibility (i.e. its microstability is smaller) than the Fc part.
为了揭示IgG分子Fab和Fc区域之间的非共价相互作用,通过氢-氘交换测量了与可逆微展开相关的平均构象自由能变化(ΔGo),用于Fab和Fc片段以及完整分子。这些实验中使用了人单克隆IgG1和混合IgG样本。氢-氘交换数据以交换弛豫谱的形式进行总结和比较。完整IgG的实验观察到的弛豫谱无法通过对Fab和Fc片段测量的谱进行加权求和推导得出。测量数据与计算数据的比较表明,将IgG分子分裂成两个Fab和Fc片段时,构象自由能增加了5 kJ/mol,即构象流动性增加。这种变化可以通过完整分子中Fab和Fc片段的相关波动模式来解释,也可以通过对接触表面的屏蔽效应来解释。两种解释都假定Fab和Fc之间存在非共价相互作用,这可能是识别位点和效应位点之间信息传递的一种方式。氢-氘交换的pH依赖性也表明了Fab和Fc区域之间的相互作用。在pH 8.2和7.3之间观察到Fab片段弛豫谱的移动,表明在较低pH下结构不稳定。完整分子中不存在这种效应,这反映了稳定Fab结构的相互作用。Fab和Fc弛豫谱的比较表明,这些片段的微稳定性相差约10 kJ/mol:Fab部分比Fc部分具有更大的构象灵活性(即其微稳定性更小)。