Multiuser Center for Biomolecular Innovation, IBILCE/UNESP, São José do Rio Preto 15054-000, Brazil.
Brazilian Synchrotron Light Laboratory (LNLS), Brazilian Center for Research in Energy and Materials (CNPEM), Campinas 13083-970, Brazil.
Int J Mol Sci. 2022 Aug 30;23(17):9857. doi: 10.3390/ijms23179857.
Staphylococcal exfoliative toxins (ETs) are glutamyl endopeptidases that specifically cleave the Glu381-Gly382 bond in the ectodomains of desmoglein 1 (Dsg1) via complex action mechanisms. To date, four ETs have been identified in different strains and ETE is the most recently characterized. The unusual properties of ETs have been attributed to a unique structural feature, i.e., the 180° flip of the carbonyl oxygen (O) of the nonconserved residue 192/186 (ETA/ETE numbering), not conducive to the oxyanion hole formation. We report the crystal structure of ETE determined at 1.61 Å resolution, in which P186(O) adopts two conformations displaying a 180° rotation. This finding, together with free energy calculations, supports the existence of a dynamic transition between the conformations under the tested conditions. Moreover, enzymatic assays showed no significant differences in the esterolytic efficiency of ETE and ETE/P186G, a mutant predicted to possess a functional oxyanion hole, thus downplaying the influence of the flip on the activity. Finally, we observed the formation of ETE homodimers in solution and the predicted homodimeric structure revealed the participation of a characteristic nonconserved loop in the interface and the partial occlusion of the protein active site, suggesting that monomerization is required for enzymatic activity.
葡萄球菌剥脱毒素(ETs)是谷氨酰内肽酶,通过复杂的作用机制特异性切割桥粒芯糖蛋白 1(Dsg1)胞外结构域中的 Glu381-Gly382 键。迄今为止,已在不同的 菌株中鉴定出四种 ETs,ETE 是最近被表征的。ETs 的异常特性归因于独特的结构特征,即非保守残基 192/186(ETA/ETE 编号)羰基氧(O)的 180°翻转,不利于形成氧阴离子穴。我们报告了 ETE 的晶体结构,其分辨率为 1.61 Å,其中 P186(O) 采用两种构象,显示出 180°的旋转。这一发现与自由能计算一起,支持在测试条件下构象之间存在动态转换的存在。此外,酶促测定显示 ETE 和 ETE/P186G(预测具有功能氧阴离子穴的突变体)的酯酶效率没有显著差异,从而淡化了翻转对活性的影响。最后,我们观察到 ETE 同二聚体在溶液中的形成,预测的同二聚体结构揭示了特征性非保守环在界面中的参与以及蛋白质活性位点的部分闭塞,表明单体化是酶活性所必需的。