Mohan P M Krishna, Joshi Mamata V, Hosur Ramakrishna V
Department of Chemical Sciences, Tata Institute of Fundamental Research, Homi Bhabha Road, Mumbai 400 005, Maharashtra, India.
Biochimie. 2009 Mar;91(3):401-7. doi: 10.1016/j.biochi.2008.10.013. Epub 2008 Nov 7.
Folding-unfolding caused by environmental changes play crucial regulatory roles in protein functions. To gain an insight into these for DLC8, a cargo adaptor in dynein motor complex, we investigated here the unfolding of homodimeric DLC8 by GdnHCl, a standard unfolding agent. Fluorescence spectroscopy revealed a three-state unfolding transition with midpoints at 1.5 and 4.0 M GdnHCl. The HSQC spectrum at 1.5 M GdnHCl displayed peaks belonging to a folded monomer. NMR chemical shift perturbations, line broadening effects and (15)N relaxation measurements at low GdnHCl concentrations identified a hierarchy in the unfolding process, with the dimer interface--the cargo binding site--being the most susceptible followed by the helices in the interior. Similar observations were made earlier for small pH perturbations and thus the early unfolding events appear to be intrinsic to the protein. These, by virtue of their location, influence target binding efficacies and thus have important regulatory implications.
环境变化引起的折叠-去折叠在蛋白质功能中发挥着关键的调节作用。为了深入了解动力蛋白复合物中的货物衔接蛋白DLC8的这些情况,我们在此研究了标准去折叠剂盐酸胍(GdnHCl)对同二聚体DLC8的去折叠作用。荧光光谱显示了一个三态去折叠转变,中点分别在1.5 M和4.0 M盐酸胍处。1.5 M盐酸胍时的HSQC谱显示出属于折叠单体的峰。在低盐酸胍浓度下的核磁共振化学位移扰动、谱线加宽效应和(15)N弛豫测量确定了去折叠过程中的一个层次结构,二聚体界面——货物结合位点——最易受影响,其次是内部的螺旋结构。早期对小pH扰动也有类似观察结果,因此早期去折叠事件似乎是该蛋白质固有的。由于它们的位置,这些事件会影响靶标结合效率,因此具有重要的调节意义。