Gao J, Wu Q, Carbeck J, Lei Q P, Smith R D, Whitesides G M
Department of Chemistry and Chemical Biology, Harvard University, Cambridge, Massachusetts 02138, USA.
Biophys J. 1999 Jun;76(6):3253-60. doi: 10.1016/s0006-3495(99)77477-1.
This paper describes the use of electrospray ionization-Fourier transform ion cyclotron mass spectrometry (ESI-FTICR-MS) to study the relative stabilities of noncovalent complexes of carbonic anhydrase II (CAII, EC 4.2.1.1) and benzenesulfonamide inhibitors in the gas phase. Sustained off-resonance irradiation collision-induced dissociation (SORI-CID) was used to determine the energetics of dissociation of these CAII-sulfonamide complexes in the gas phase. When two molecules of a benzenesulfonamide (1) were bound simultaneously to one molecule of CAII, one of them was found to exhibit significantly weaker binding (DeltaE50 = 0.4 V, where E50 is defined as the amplitude of sustained off-resonance irradiation when 50% of the protein-ligand complexes are dissociated). In solution, the benzenesulfonamide group coordinates as an anion to a Zn(II) ion bound at the active site of the enzyme. The gas phase stability of the complex with the weakly bound inhibitor was the same as that of the inhibitor complexed with apoCAII (i.e., CAII with the Zn(II) ion removed from the binding site). These results indicate that specific interactions between the sulfonamide group on the inhibitor and the Zn(II) ion on CAII were preserved in the gas phase. Experiments also showed a higher gas phase stability for the complex of para-NO2-benzenesulfonamide-CAII than that for ortho-NO2-benzenesulfonamide-CAII complex. This result further suggests that steric interactions of the inhibitors with the binding pocket of CAII parallel those in solution. Overall, these results are consistent with the hypothesis that CAII retains, at least partially, the structure of its binding pocket in the gas phase on the time scale (seconds to minutes) of the ESI-FTICR measurements.
本文描述了使用电喷雾电离-傅里叶变换离子回旋共振质谱(ESI-FTICR-MS)来研究碳酸酐酶II(CAII,EC 4.2.1.1)与苯磺酰胺抑制剂在气相中非共价复合物的相对稳定性。采用持续非共振辐照碰撞诱导解离(SORI-CID)来确定这些CAII-磺酰胺复合物在气相中的解离能量。当两分子苯磺酰胺(1)同时与一分子CAII结合时,发现其中一个表现出明显较弱的结合(ΔE50 = 0.4 V,其中E50定义为当50%的蛋白质-配体复合物解离时持续非共振辐照的幅度)。在溶液中,苯磺酰胺基团作为阴离子与结合在酶活性位点的Zn(II)离子配位。与弱结合抑制剂形成的复合物在气相中的稳定性与与脱辅基CAII(即从结合位点去除Zn(II)离子的CAII)形成的抑制剂复合物相同。这些结果表明抑制剂上的磺酰胺基团与CAII上的Zn(II)离子之间的特定相互作用在气相中得以保留。实验还表明,对硝基苯磺酰胺-CAII复合物在气相中的稳定性高于邻硝基苯磺酰胺-CAII复合物。这一结果进一步表明抑制剂与CAII结合口袋的空间相互作用与溶液中的情况相似。总体而言,这些结果与以下假设一致:在ESI-FTICR测量的时间尺度(秒至分钟)内,CAII在气相中至少部分保留了其结合口袋的结构。