Murciano-Calles Javier, Güell-Bosch Jofre, Villegas Sandra, Martinez Jose C
Departmento de Química Física e Instituto de Biotecnología, Facultad de Ciencias, Universidad de Granada, 18071, Granada, Spain.
Department de Bioquímica I Biologia Molecular, Facultat de Biociències, Universitat Autònoma de Barcelona, Bellaterra 08193, Barcelona, Spain.
Sci Rep. 2016 Jan 12;6:19242. doi: 10.1038/srep19242.
PDZ domains are protein-protein interaction modules sharing the same structural arrangement. To discern whether they display common features in their unfolding/misfolding behaviour we have analyzed in this work the unfolding thermodynamics, together with the misfolding kinetics, of the PDZ fold using three archetypical examples: the second and third PDZ domains of the PSD95 protein and the Erbin PDZ domain. Results showed that all domains passed through a common intermediate, which populated upon unfolding, and that this in turn drove the misfolding towards worm-like fibrillar structures. Thus, the unfolding/misfolding behaviour appears to be shared within these domains. We have also analyzed how this landscape can be modified upon the inclusion of extra-elements, as it is in the nNOS PDZ domain, or the organization of swapped species, as happens in the second PDZ domain of the ZO2 protein. Although the intermediates still formed upon thermal unfolding, the misfolding was prevented to varying degrees.
PDZ结构域是具有相同结构排列的蛋白质-蛋白质相互作用模块。为了辨别它们在展开/错误折叠行为中是否具有共同特征,我们在这项工作中使用三个典型例子分析了PDZ折叠的展开热力学以及错误折叠动力学:PSD95蛋白的第二个和第三个PDZ结构域以及Erbin PDZ结构域。结果表明,所有结构域都经过一个在展开时出现的共同中间体,而这反过来又促使错误折叠形成蠕虫状纤维结构。因此,这些结构域的展开/错误折叠行为似乎是共同的。我们还分析了在包含额外元件(如在nNOS PDZ结构域中)或交换物种的组织(如在ZO2蛋白的第二个PDZ结构域中)时,这种情况会如何改变。尽管热展开时仍会形成中间体,但错误折叠在不同程度上得到了抑制。