Zhu Wenkai, Li Ying, Liu Maili, Zhu Jiang, Yang Yunhuang
State Key Laboratory of Magnetic Resonance and Atomic Molecular Physics, Key Laboratory of Magnetic Resonance in Biological Systems, National Center for Magnetic Resonance in Wuhan, Wuhan Institute of Physics and Mathematics , Chinese Academy of Sciences , Wuhan 430071 , People's Republic of China.
University of Chinese Academy of Sciences , Beijing 100049 , People's Republic of China.
J Phys Chem Lett. 2019 Mar 21;10(6):1272-1278. doi: 10.1021/acs.jpclett.9b00052. Epub 2019 Mar 6.
Pin1 is a two-domain peptidyl-prolyl isomerase (PPIase) associated with neurodegeneration and tumorigenesis. The two domains, a WW and a PPIase domain, are connected by a flexible linker, making Pin1 adopt various conformations ranging from compact to extended, wherein Pin1 exhibits different extents of interdomain contact. Previous studies have shown that weakening interdomain contact increases the isomerase activity of Pin1. Here, we propose an NMR chemical shift correlation-analysis-based method that will be general for two-domain proteins to gauge two-state populations of Pin1, and we report a linker-modified mutant of Pin1 with enhanced interdomain contact and increased isomerase activity, with the latter suggesting an uncorrelated effect of interdomain contact on isomerase activity. Thus, although bindings of different substrates in the WW domain impose opposite effects on interdomain contact, in both cases, it may promote isomerization, implying cooperativity between substrate binding in the WW domain and isomerization in the PPIase domain.
Pin1是一种与神经退行性变和肿瘤发生相关的双结构域肽基脯氨酰异构酶(PPIase)。这两个结构域,一个WW结构域和一个PPIase结构域,通过一个柔性接头相连,使得Pin1呈现出从紧凑到伸展的各种构象,其中Pin1表现出不同程度的结构域间接触。先前的研究表明,减弱结构域间接触会增加Pin1的异构酶活性。在此,我们提出一种基于核磁共振化学位移相关分析的方法,该方法对双结构域蛋白具有通用性,可用于测量Pin1的两种状态的比例,并且我们报道了一种Pin1的接头修饰突变体,其结构域间接触增强且异构酶活性增加,后者表明结构域间接触对异构酶活性有不相关的影响。因此,尽管WW结构域中不同底物的结合对结构域间接触产生相反的影响,但在这两种情况下,它都可能促进异构化,这意味着WW结构域中的底物结合与PPIase结构域中的异构化之间存在协同作用。