Palencia Andres, Martinez Jose C, Mateo Pedro L, Luque Irene, Camara-Artigas Ana
Department of Physical Chemistry and Institute of Biotechnology, Faculty of Sciences, University of Granada, 18071 Granada, Spain.
Acta Crystallogr D Biol Crystallogr. 2006 Apr;62(Pt 4):458-64. doi: 10.1107/S0907444906005221. Epub 2006 Mar 18.
The UEV domain of the TSG101 protein functions in the vacuolar protein-sorting pathway and in the budding process of HIV-1 and other retroviruses by recognizing ubiquitin in proteins tagged for degradation and short sequences in viral proteins containing an essential and well conserved PTAP motif, respectively. A deep understanding of these interactions is key to the rational design of much-needed novel antivirals. Here, the crystal structure of the TSG101 UEV domain (TSG101-UEV) is presented. TSG101-UEV was crystallized in the presence of PEG 4000 and ammonium sulfate. Under these conditions, crystals were obtained in space group R3, with unit-cell parameters a = b = 97.9, c = 110.6 A, alpha = beta = 90, gamma = 120 degrees . Phases were solved by molecular replacement and the crystal structure of TSG101-UEV was refined to an R factor of 18.8% at 2.2 A resolution. A comparison between the crystal structure and previously reported NMR structures has revealed significant differences in the conformation of one of the loops implicated in ubiquitin recognition. Also, the resulting structure has provided information about the presence of water molecules at the binding interface that could be of relevance for peptide recognition.
TSG101蛋白的UEV结构域在液泡蛋白分选途径以及HIV-1和其他逆转录病毒的出芽过程中发挥作用,分别通过识别标记用于降解的蛋白质中的泛素以及病毒蛋白中包含必需且高度保守的PTAP基序的短序列。深入了解这些相互作用是合理设计急需的新型抗病毒药物的关键。在此,展示了TSG101 UEV结构域(TSG101-UEV)的晶体结构。TSG101-UEV在聚乙二醇4000和硫酸铵存在的情况下结晶。在这些条件下,晶体属于R3空间群,晶胞参数为a = b = 97.9,c = 110.6 Å,α = β = 90,γ = 120°。通过分子置换法解析相位,TSG101-UEV的晶体结构在2.2 Å分辨率下精修至R因子为18.8%。晶体结构与先前报道的核磁共振结构之间的比较揭示,在涉及泛素识别的一个环的构象上存在显著差异。此外,所得结构提供了有关结合界面处水分子存在的信息,这可能与肽识别相关。