Wear Martin A, Nowicki Matthew W, Blackburn Elizabeth A, McNae Iain W, Walkinshaw Malcolm D
The Edinburgh Protein Production Facility (EPPF) Wellcome Trust Centre for Cell Biology (WTCCB) University of Edinburgh UK.
FEBS Open Bio. 2017 Feb 23;7(4):533-549. doi: 10.1002/2211-5463.12201. eCollection 2017 Apr.
We have established a refined methodology for generating surface plasmon resonance sensor surfaces of recombinant his-tagged human cyclophilin-A. Our orientation-specific stabilisation approach captures his-tagged protein under 'physiological conditions' (150 mm NaCl, pH 7.5) and covalently stabilises it on Ni-nitrilotriacetic acid surfaces, very briefly activated for primary amine-coupling reactions, producing very stable and active surfaces (≥ 95% specific activity) of cyclophilin-A. Variation in protein concentration with the same contact time allows straightforward generation of variable density surfaces, with essentially no loss of activity, making the protocol easily adaptable for studying numerous interactions; from very small fragments, ~ 100 Da, to large protein ligands. This new method results in an increased stability and activity of the immobilised protein and allowed us to expand the thermo-kinetic analysis space, and to determine accurate and robust thermodynamic parameters for the cyclophilin-A-cyclosporin-A interaction. Furthermore, the increased sensitivity of the surface allowed identification of a new nonpeptide inhibitor of cyclophilin-A, from a screen of a fragment library. This fragment, 2,3-diaminopyridine, bound specifically with a mean affinity of 248 ± 60 μm. The X-ray structure of this 109-Da fragment bound in the active site of cyclophilin-A was solved to a resolution of 1.25 Å (PDB: 5LUD), providing new insight into the molecular details for a potential new series of nonpeptide cyclophilin-A inhibitors.
我们已经建立了一种精细的方法来生成重组组氨酸标签人亲环素A的表面等离子体共振传感器表面。我们的定向特异性稳定化方法在“生理条件”(150 mM氯化钠,pH 7.5)下捕获组氨酸标签蛋白,并将其共价稳定在镍三乙酸表面,该表面经过短暂活化以进行伯胺偶联反应,从而产生非常稳定且活性高的亲环素A表面(比活性≥95%)。在相同接触时间下改变蛋白质浓度可直接生成可变密度的表面,且活性基本无损失,这使得该方案易于适用于研究多种相互作用;从非常小的片段(约100 Da)到大的蛋白质配体。这种新方法提高了固定化蛋白质的稳定性和活性,使我们能够扩展热动力学分析空间,并确定亲环素A - 环孢素A相互作用的准确且可靠的热力学参数。此外,表面灵敏度的提高使得从片段文库筛选中鉴定出一种新的亲环素A非肽抑制剂成为可能。该片段,2,3 - 二氨基吡啶,特异性结合,平均亲和力为248± sixty μm。解析了这个109 - Da片段结合在亲环素A活性位点的X射线结构,分辨率为1.25 Å(PDB:5LUD),为潜在的新系列亲环素A非肽抑制剂的分子细节提供了新的见解。