Akashi S, Takio K
Division of Biomolecular Characterization, RIKEN (The Institute of Physical and Chemical Research), Wako, Saitama, Japan.
Protein Sci. 2000 Dec;9(12):2497-505. doi: 10.1110/ps.9.12.2497.
We investigated the interaction between a thiol protease inhibitor, cystatin, and its target enzyme, papain, by hydrogen-deuterium (H/D) exchange in conjunction with successive analysis by collision-induced dissociation (CID) in an rf-only hexapole ion guide with electrospray ionization-Fourier transform ion cyclotron resonance mass spectrometry (ESI-FTICR MS). The deuterium incorporation into backbone amide hydrogens of cystatin was analyzed at different time points in the presence or absence of papain, examining the mass of each fragment produced by hexapole-CID. In the absence of papain, amide hydrogens in short amino-terminal fragments, such as b10(2+) and b12(2+), were highly deuterated within 1 min. Although fewer fragments were observed for the cystatin-papain complex in the hexapole-CID spectra, significant reductions in initial deuterium content were recognized throughout the sequence of cystatin. This suggests that complex formation restricted the flexibility of the whole cystatin molecule. Detailed analyses revealed that a marked reduction in deuterium content in the region of residues 1-10 persisted for hours, suggesting that the flexible N-terminal region was tightly fixed in the binding pocket with hydrogen bonds. Our results are consistent with those of previous studies on the structure and inhibition mechanism of cystatin. We demonstrated here that enzyme-inhibitor interactions can be characterized by H/D exchange in combination with CID in a hexapole ion guide using ESI-FTICR MS rapidly and using only a small amount of sample.
我们通过氢-氘(H/D)交换,并结合在仅配备射频的六极杆离子导向器中利用电喷雾电离-傅里叶变换离子回旋共振质谱(ESI-FTICR MS)进行的碰撞诱导解离(CID)连续分析,研究了一种硫醇蛋白酶抑制剂——胱抑素与其靶酶木瓜蛋白酶之间的相互作用。在存在或不存在木瓜蛋白酶的情况下,于不同时间点分析胱抑素主链酰胺氢中的氘掺入情况,通过六极杆-CID检测每个产生的片段的质量。在不存在木瓜蛋白酶的情况下,短氨基末端片段(如b10(2+)和b12(2+))中的酰胺氢在1分钟内高度氘化。尽管在六极杆-CID光谱中观察到的胱抑素-木瓜蛋白酶复合物的片段较少,但在胱抑素的整个序列中均发现初始氘含量显著降低。这表明复合物的形成限制了整个胱抑素分子的灵活性。详细分析显示,残基1-10区域的氘含量显著降低持续了数小时,这表明柔性的N末端区域通过氢键紧密固定在结合口袋中。我们的结果与先前关于胱抑素结构和抑制机制的研究结果一致。我们在此证明,酶-抑制剂相互作用可以通过H/D交换结合在六极杆离子导向器中利用ESI-FTICR MS进行的CID来表征,且快速且仅需少量样品。