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pH dependent unfolding characteristics of DLC8 dimer: Residue level details from NMR.

机译:DLC8二聚体的pH依赖性解折叠特性:NMR残留水平的详细信息。

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Environment dependence of folding and unfolding of a protein is central to its function. In the same vein, knowledge of pH dependence of stability and folding/unfolding is crucial for many biophysical equilibrium and kinetic studies designed to understand protein folding mechanisms. In the present study we investigated the guanidine induced unfolding transition of dynein light chain protein (DLC8), a cargo adaptor of the dynein complex in the pH range 7-10. It is observed that while the protein remains a dimer in the entire pH range, its stability is somewhat reduced at alkaline pH. Global unfolding features monitored using fluorescence spectroscopy revealed that the unfolding transition of DLC8 at pH 7 is best described by a three-state model, whereas, that at pH 10 is best described by a two-state model. Chemical shift perturbations due to pH change provided insights into the corresponding residue level structural perturbations in the DLC8 dimer. Likewise, backbone (15)N relaxation measurements threw light on the corresponding motional changes in the dimeric protein. These observations have been rationalized on the basis of expected changes with increasing pH in the protonation states of the titratable residues on the structure of the protein. These, in turn provide an explanation for the change from three-state to two-state guanidine induced unfolding transition as the pH is increased from 7 to 10. All these results exemplify and highlight the role of environment vis-a-vis the sequence and structure of a given protein in dictating its folding/unfolding characteristics.
机译:蛋白质折叠和展开的环境依赖性对其功能至关重要。同样,了解稳定性和折叠/展开的pH依赖性对于许多旨在理解蛋白质折叠机制的生物物理平衡和动力学研究至关重要。在本研究中,我们研究了胍诱导的达因轻链蛋白(DLC8)的解折叠转变,它是pH范围为7-10的达因复合物的货运衔接子。观察到,尽管蛋白质在整个pH范围内都保持二聚体,但在碱性pH下其稳定性有所降低。使用荧光光谱监测的整体展开特征显示,在三态模型中,DLC8在pH 7时的展开转变最好描述,而在二态模型中,在pH 10时的DLC8展开过程最好。 pH值变化引起的化学位移扰动提供了对DLC8二聚体中相应残基水平结构扰动的了解。同样,骨架(15)N弛豫测量结果也揭示了二聚体蛋白质中相应的运动变化。这些观察已根据蛋白质结构上可滴定残基的质子化状态中pH值随pH的增加而变化的预期进行了合理化。这些反过来又解释了随着pH从7增加到10,胍引起的三态到二态胍的解折叠转变。所有这些结果例证了环境对序列和序列的作用。给定蛋白质的结构决定其折叠/展开特性。

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