Department of Chemical Sciences, Tata Institute of Fundamental Research, Mumbai, India.
Biophys Chem. 2010 Dec;153(1):17-26. doi: 10.1016/j.bpc.2010.09.010. Epub 2010 Oct 27.
Local structural and dynamic modulations due to small environmental perturbations reflect the adaptability of the protein to different interactors. We have investigated here the preferential local perturbations in Dynein light chain protein (DLC8), a cargo adapter, by sub-denaturing urea concentrations. Equilibrium unfolding experiments by optical spectroscopic methods indicated a two state like unfolding of DLC8 dimer, with the transition mid-point occurring around 8.6M urea. NMR studies identified the β3 and β4 strands, N-, C- terminal regions, loops connecting β1 to α1, α1 to α2 and β3 to β4 as the soft targets of urea perturbation and thus indicated potential unfolding initiation sites. Native-state hydrogen exchange studies suggested the unfolding to traverse from the edges towards the centre of the secondary structural elements. At 6M urea the whole protein chain acts like a cooperative unit. These observations are expected to have important implications for the protein's multiple functions.
由于微小的环境干扰而导致的局部结构和动态调节反映了蛋白质对不同相互作用物的适应性。我们在这里通过亚变性尿素浓度研究了动力蛋白轻链蛋白(DLC8)这种货物衔接蛋白的优先局部微扰。通过光学光谱方法的平衡展开实验表明 DLC8 二聚体的类似两态展开,其转变中点发生在约 8.6M 尿素处。NMR 研究鉴定了β3 和β4 链、N-、C-末端区域、连接β1 到α1、α1 到α2 和β3 到β4 的环作为尿素微扰的软靶标,从而指示了潜在的展开起始位点。天然状态下的氢交换研究表明,展开过程是从边缘向二级结构元素的中心进行的。在 6M 尿素中,整个蛋白质链表现得像一个协同单位。这些观察结果预计对蛋白质的多种功能具有重要意义。