Rowe E S
Biochemistry. 1976 Feb 24;15(4):905-16. doi: 10.1021/bi00649a028.
The conformational equilibria and the kinetics of the approach to equilibrium of an IgG1 myeloma (Wes) Fab fragment (SSFab) and its mildly reduced and S-carboxyamidomethylated derivative (RAFab) were studied as a function of guanidine hydrochloride concentration. The unimolecular denaturation of SSFab, the bimolecular denaturation of RAFab, and the denaturation of Wes L chain reported previously (Rowe, E. S., and Tanford, C., (1973), Biochemistry 12, 4822) are interpreted in terms of the domain structure and evaluated in terms of the thermodynamic stability of the protein and the covalent and noncovalent interactions among its subunits. The Fd-L interactions are found to be extremely strong and are maintained at concentrations of denaturant sufficient to denature the individual domains. It is shown that all of the data are consistent with a two region structure for Fab, one composed of the vL and vH domains, and the other composed of the cL and cH domains, so that there are two sites of noncovalent Fd-L interactions. One region, identified as the C region, is found to be 10(2)-10(4) times more stable than the other; this difference in stability is attributed largely to a stronger and more extensive interaction between the domains of this region. The kinetics of the approach to equilibrium are found to be extremely slow in the center of the transitions, requiring up to a week for equilibration for RAFab, and several months for SSFab. This unusual kinetic behavior is shown to be due to the strong Fd-L interaction under conditions where the monomeric domains are unstable.
研究了IgG1骨髓瘤(Wes)Fab片段(SSFab)及其轻度还原和S-羧甲基化衍生物(RAFab)的构象平衡以及达到平衡的动力学,作为盐酸胍浓度的函数。根据结构域结构解释了SSFab的单分子变性、RAFab的双分子变性以及先前报道的Wes轻链变性(Rowe, E. S., and Tanford, C., (1973), Biochemistry 12, 4822),并根据蛋白质的热力学稳定性及其亚基之间的共价和非共价相互作用进行了评估。发现Fd-L相互作用极强,并且在足以使各个结构域变性的变性剂浓度下仍能维持。结果表明,所有数据都与Fab的双区域结构一致,一个区域由vL和vH结构域组成,另一个区域由cL和cH结构域组成,因此存在两个非共价Fd-L相互作用位点。发现一个区域,即C区域,比另一个区域稳定10²-10⁴倍;这种稳定性差异主要归因于该区域结构域之间更强、更广泛的相互作用。发现在转变中心达到平衡的动力学极其缓慢,RAFab达到平衡需要长达一周的时间,而SSFab则需要几个月的时间。这种不寻常的动力学行为表明是由于在单体结构域不稳定的条件下Fd-L相互作用很强。