Hochscherf Jennifer, Pietsch Markus, Tieu William, Kuan Kevin, Abell Andrew D, Gütschow Michael, Niefind Karsten
Department of Chemistry, Institute of Biochemistry, Universität zu Köln, Zülpicher Str. 47, 50674 Cologne, Germany.
Centre of Pharmacology, Medical Faculty, Universität zu Köln, Gleueler Str. 24, 50931 Cologne, Germany.
Acta Crystallogr F Struct Biol Commun. 2018 Aug 1;74(Pt 8):480-489. doi: 10.1107/S2053230X1800537X. Epub 2018 Jul 26.
Glycosylated human leukocyte elastase (HLE) was crystallized and structurally analysed in complex with a 1,3-thiazolidine-2,4-dione derivative that had been identified as an HLE inhibitor in preliminary studies. In contrast to previously described HLE structures with small-molecule inhibitors, in this structure the inhibitor does not bind to the S1 and S2 substrate-recognition sites; rather, this is the first HLE structure with a synthetic inhibitor in which the S2' site is blocked that normally binds the second side chain at the C-terminal side of the scissile peptide bond in a substrate protein. The inhibitor also induces the formation of crystalline HLE dimers that block access to the active sites and that are also predicted to be stable in solution. Neither such HLE dimers nor the corresponding crystal packing have been observed in previous HLE crystal structures. This novel crystalline environment contributes to the observation that comparatively large parts of the N-glycan chains of HLE are defined by electron density. The final HLE structure contains the largest structurally defined carbohydrate trees among currently available HLE structures.
糖基化人白细胞弹性蛋白酶(HLE)与一种在初步研究中被鉴定为HLE抑制剂的1,3 - 噻唑烷 - 2,4 - 二酮衍生物形成复合物后进行了结晶和结构分析。与先前描述的含有小分子抑制剂的HLE结构不同,在该结构中,抑制剂不与S1和S2底物识别位点结合;相反,这是第一个含有合成抑制剂的HLE结构,其中S2'位点被阻断,该位点通常在底物蛋白中可裂解肽键的C末端侧结合第二条侧链。该抑制剂还诱导形成结晶HLE二聚体,这些二聚体阻断了对活性位点的访问,并且预计在溶液中也很稳定。在先前的HLE晶体结构中均未观察到此类HLE二聚体或相应的晶体堆积。这种新颖的晶体环境有助于观察到HLE的N - 聚糖链的相对较大部分由电子密度定义。最终的HLE结构在目前可用的HLE结构中包含最大的结构明确的碳水化合物树。