Krooshof G H, Floris R, Tepper A W, Janssen D B
Department of Biochemistry, Groningen Biomolecular Sciences and Biotechnology Institute, University of Groningen, The Netherlands.
Protein Sci. 1999 Feb;8(2):355-60. doi: 10.1110/ps.8.2.355.
Haloalkane dehalogenase (DhlA) hydrolyzes short-chain haloalkanes to produce the corresponding alcohols and halide ions. Release of the halide ion from the active-site cavity can proceed via a two-step and a three-step route, which both contain slow enzyme isomerization steps. Thermodynamic analysis of bromide binding and release showed that the slow unimolecular isomerization steps in the three-step bromide export route have considerably larger transition state enthalpies and entropies than those in the other route. This suggests that the three-step route involves different and perhaps larger conformational changes than the two-step export route. We propose that the three-step halide export route starts with conformational changes that result in a more open configuration of the active site from which the halide ion can readily escape. In addition, we suggest that the two-step route for halide release involves the transfer of the halide ion from the halide-binding site in the cavity to a binding site somewhere at the protein surface, where a so-called collision complex is formed in which the halide ion is only weakly bound. No large structural rearrangements are necessary for this latter process.
卤代烷脱卤酶(DhlA)催化短链卤代烷水解,生成相应的醇和卤离子。卤离子从活性位点腔的释放可通过两步和三步途径进行,这两种途径均包含缓慢的酶异构化步骤。对溴离子结合和释放的热力学分析表明,三步溴离子输出途径中的缓慢单分子异构化步骤比另一条途径具有更大的过渡态焓和熵。这表明三步途径涉及的构象变化与两步输出途径不同,可能也更大。我们认为,三步卤离子输出途径始于构象变化,导致活性位点形成更开放的构型,卤离子可由此轻易逸出。此外,我们认为卤离子释放的两步途径涉及卤离子从腔中的卤离子结合位点转移至蛋白质表面某处的结合位点,在那里形成所谓的碰撞复合物,其中卤离子仅弱结合。后一过程无需大的结构重排。