Tobler Scott A, Fernandez Erik J
Department of Chemical Engineering, University of Virginia, Charlottesville, Virginia 22904-4741, USA.
Protein Sci. 2002 Jun;11(6):1340-52. doi: 10.1110/ps.3770102.
Using hydrogen-deuterium exchange (HX) and electrospray ionization mass spectrometry, we have investigated the stability and structural changes of recombinant human interferon-gamma (IFN-gamma) during aggregation induced by guanidine hydrochloride (GdnHCl) and potassium thiocyanate. First, HX labeling was initiated after the amorphous aggregates were formed to probe the tertiary structure of the aggregated state. Second, labeling was performed at low protein concentrations to assess stability under aggregation prone conditions. In 1 M GdnHCl, the stability of IFN-gamma was greatly reduced and much less protection from HX in solution was observed. Exchange under these conditions was slower in helix C than in the rest of the protein. Aggregates formed in 1 M GdnHCl showed a HX pattern consistent with a partially unfolded state with an intact helix C. Although aggregates formed in 0.3 M KSCN exhibited a HX pattern similar to those formed in GdnHCl, the solution phase HX pattern in 0.3 M KSCN was surprisingly comparable to that of the native state. Varying the aggregation time before performing HX revealed that KSCN first precipitated native protein and then facilitated partial unfolding of the precipitated protein. These results show that helix C, which forms the hydrophobic core of the IFN-gamma dimer, is highly protected from HX under native conditions, is more stable in GdnHCl than the rest of the protein and remains intact in both GdnHCl- and KSCN-induced aggregates. This suggests that native-state HX patterns may presage regions of the protein susceptible to unfolding during aggregation.
利用氢-氘交换(HX)和电喷雾电离质谱,我们研究了重组人干扰素-γ(IFN-γ)在盐酸胍(GdnHCl)和硫氰酸钾诱导聚集过程中的稳定性和结构变化。首先,在无定形聚集体形成后启动HX标记,以探测聚集态的三级结构。其次,在低蛋白浓度下进行标记,以评估在易于聚集的条件下的稳定性。在1 M GdnHCl中,IFN-γ的稳定性大大降低,溶液中对HX的保护作用明显减弱。在这些条件下,螺旋C中的交换比蛋白质的其余部分慢。在1 M GdnHCl中形成的聚集体显示出与部分未折叠状态一致的HX模式,螺旋C完整。尽管在0.3 M KSCN中形成的聚集体显示出与在GdnHCl中形成的聚集体相似的HX模式,但0.3 M KSCN中的溶液相HX模式令人惊讶地与天然状态相当。在进行HX之前改变聚集时间表明,KSCN首先沉淀天然蛋白质,然后促进沉淀蛋白质的部分展开。这些结果表明,形成IFN-γ二聚体疏水核心的螺旋C在天然条件下受到高度保护,免受HX影响,在GdnHCl中比蛋白质的其余部分更稳定,并且在GdnHCl和KSCN诱导的聚集体中均保持完整。这表明天然状态的HX模式可能预示着蛋白质在聚集过程中易于展开的区域。