Zhu Haili, Liu Zexu, Huang Yuxin, Zhang Chao, Li Gang, Liu Wei
Shenzhen Key Laboratory for Neuronal Structural Biology, Biomedical Research Institute, Shenzhen Peking University-The Hong Kong University of Science and Technology Medical Center, Shenzhen 518036, China.
Division of Life Science, State Key Laboratory of Molecular Neuroscience, Hong Kong University of Science and Technology, Hong Kong, China.
Acta Biochim Biophys Sin (Shanghai). 2015 Mar;47(3):199-206. doi: 10.1093/abbs/gmv002. Epub 2015 Feb 7.
Specific protein-protein interactions are important for biological signal transduction. The postsynaptic density-95, disc-large, and zonulin-1 (PDZ) domain is one of the most abundant protein interaction modules. Multi-PDZ-domain protein 1 (MUPP1), as a scaffold protein, contains 13 PDZ domains and plays an important role in cytoskeletal organization, cell polarity, and cell proliferation. The study on PDZ domain of MUPP1 helps to understand the mechanisms and functions of MUPP1. In the present study, the fourth PDZ domain of MUPP1 (MUPP1-PDZ4) from Mus musculus was cloned, expressed, purified, and characterized. The MUPP1-PDZ4 domain was subcloned into a pET-vector and expressed in Escherichia coli. Affinity chromatography and size-exclusion chromatography were used to purify the protein. MUPP1-PDZ4 protein was a monomer with a molar mass of 16.4 kDa in solution and had a melting point of 60.3°C. Using the sitting-drop vapor-diffusion method, MUPP1-PDZ4 protein crystals were obtained in a solution (pH 7.0) containing 2% (v/v) polyethylene glycol 400, 0.1 M imidazole, and 24% (w/v) polyethylene glycol monoethyl ether 5000. Finally, the crystal was diffracted with 1.6 Å resolution. The crystal structure showed that MUPP1-PDZ4 domain contained three α-helices and six β-strands in the core. The GLGI motif, L562/A564 on the β-strand B, and H605/V608/L612 on the α-helix B formed a PDZ binding pocket which could bind to the C-terminal of the binding partners. This biochemical and structural information will provide insights into how PDZ binds to its target peptide and the theoretical foundation for the function of MUPP1.
特定的蛋白质-蛋白质相互作用对于生物信号转导至关重要。突触后致密蛋白95、盘状大蛋白和zonulin-1(PDZ)结构域是最丰富的蛋白质相互作用模块之一。多PDZ结构域蛋白1(MUPP1)作为一种支架蛋白,包含13个PDZ结构域,在细胞骨架组织、细胞极性和细胞增殖中发挥重要作用。对MUPP1的PDZ结构域的研究有助于理解MUPP1的机制和功能。在本研究中,从小鼠中克隆、表达、纯化并鉴定了MUPP1的第四个PDZ结构域(MUPP1-PDZ4)。将MUPP1-PDZ4结构域亚克隆到pET载体中并在大肠杆菌中表达。使用亲和色谱和尺寸排阻色谱法纯化该蛋白。MUPP1-PDZ4蛋白在溶液中是单体,摩尔质量为16.4 kDa,熔点为60.3°C。采用坐滴气相扩散法,在含有2%(v/v)聚乙二醇400、0.1 M咪唑和24%(w/v)聚乙二醇单乙醚5000的溶液(pH 7.0)中获得了MUPP1-PDZ4蛋白晶体。最后,该晶体以1.6 Å的分辨率进行衍射。晶体结构表明,MUPP1-PDZ4结构域的核心包含三个α螺旋和六条β链。β链B上的GLGI基序、L562/A564以及α螺旋B上的H605/V608/L612形成了一个PDZ结合口袋,可与结合伴侣的C末端结合。这些生化和结构信息将为深入了解PDZ如何与其靶肽结合以及MUPP1功能的理论基础提供见解。