Bhattacharyya A, Mandal A K, Banerjee R, Roy S
Department of Biophysics, Bose Institute, Calcutta, India.
Biophys Chem. 2000 Oct 30;87(2-3):201-12. doi: 10.1016/s0301-4622(00)00192-7.
Bis-ANS binds to native glutaminyl-tRNA synthetase (GlnRS) with a fast and a slow phase. The rate constant of the slow phase is independent of bis-ANS concentration suggesting a slow conformational change in the pathway of bis-ANS binding. Aging of GlnRS causes a large decrease of the slow phase amplitude with concomitant increase of the fast phase amplitude. Several other large, multi-domain proteins show similar patterns upon aging. The near UV-CD spectra of the native and the aged GlnRS remain similar. Significant changes in far UV-CD, acrylamide quenching and sulfhydryl reactivity, are seen upon aging, suggesting disruptions in native interactions. Refolding of GlnRS from the urea-denatured state rapidly produces a state that is very similar to the equilibrium molten globule state. Bis-ANS binds to the molten globule state with kinetics similar to that of the aged state and unlike that of the native state. This suggests that the slow binding phase of bis-ANS, seen in native proteins, originate from relatively high energy barriers between the native and the more open states. Thus bis-ANS can be used as a powerful probe for large amplitude, low-frequency motions of proteins.
双-ANS与天然谷氨酰胺-tRNA合成酶(GlnRS)结合存在快相和慢相。慢相的速率常数与双-ANS浓度无关,表明双-ANS结合途径中存在缓慢的构象变化。GlnRS的老化导致慢相振幅大幅下降,同时快相振幅增加。其他几种大型多结构域蛋白在老化时也表现出类似模式。天然和老化的GlnRS的近紫外圆二色光谱保持相似。老化时远紫外圆二色、丙烯酰胺猝灭和巯基反应性有显著变化,表明天然相互作用受到破坏。GlnRS从尿素变性状态复性迅速产生一种与平衡态熔球状态非常相似的状态。双-ANS与熔球状态结合的动力学与老化状态相似,与天然状态不同。这表明在天然蛋白质中观察到的双-ANS慢结合相源于天然态与更开放态之间相对较高的能量屏障。因此,双-ANS可作为蛋白质大幅度低频运动的有力探针。