Department of Medical Biochemistry and Microbiology, Uppsala University, SE-75123 Uppsala, Sweden.
Istituto Pasteur-Fondazione Cenci Bolognetti, Dipartimento di Scienze Biochimiche "A. Rossi Fanelli," Sapienza Università di Roma, 00185 Roma, Italy;
Proc Natl Acad Sci U S A. 2020 Sep 29;117(39):24294-24304. doi: 10.1073/pnas.2007201117. Epub 2020 Sep 14.
The notion that protein function is allosterically regulated by structural or dynamic changes in proteins has been extensively investigated in several protein domains in isolation. In particular, PDZ domains have represented a paradigm for these studies, despite providing conflicting results. Furthermore, it is still unknown how the association between protein domains in supramodules, consitituting so-called supertertiary structures, affects allosteric networks. Here, we experimentally mapped the allosteric network in a PDZ:ligand complex, both in isolation and in the context of a supramodular structure, and show that allosteric networks in a PDZ domain are highly dependent on the supertertiary structure in which they are present. This striking sensitivity of allosteric networks to the presence of adjacent protein domains is likely a common property of supertertiary structures in proteins. Our findings have general implications for prediction of allosteric networks from primary and tertiary structures and for quantitative descriptions of allostery.
蛋白质功能可通过蛋白质的结构或动力学变化进行变构调节,这一概念已在多个独立的蛋白质结构域中得到广泛研究。特别是 PDZ 结构域就是这些研究的范例,尽管得出的结果相互矛盾。此外,目前尚不清楚构成所谓超级三级结构的超模块中蛋白质结构域之间的关联如何影响变构网络。在这里,我们通过实验分别在孤立状态和超模块结构的背景下对 PDZ:配体复合物中的变构网络进行了映射,并表明 PDZ 结构域中的变构网络高度依赖于其所在的超级三级结构。这种变构网络对相邻蛋白质结构域存在的惊人敏感性很可能是蛋白质超级三级结构的共同特性。我们的研究结果对于从一级和三级结构预测变构网络以及对变构进行定量描述具有普遍意义。