Alahuhta Markus, Salin Mikko, Casteleijn Marco G, Kemmer Christian, El-Sayed Ibrahim, Augustyns Koen, Neubauer Peter, Wierenga Rik K
Biocenter Oulu, University of Oulu, Oulu, Finland..
Protein Eng Des Sel. 2008 Apr;21(4):257-66. doi: 10.1093/protein/gzn002. Epub 2008 Jan 31.
A monomeric variant of triosephosphate isomerase (TIM) with a new engineered binding groove has been characterized further. In this variant (ml8bTIM), the phosphate binding loop had been shortened, causing the binding site to be much more extended. Here, it is reported that in the V233A variant of ml8bTIM (A-TIM), three important properties of the wild-type TIM active site have been restored: (i) the structural properties of loop-7, (ii) the binding site of a conserved water molecule between loop-7 and loop-8 and (iii) the binding site of the phosphate moiety. It is shown that the active site of A-TIM can bind TIM transition state analogs and suicide inhibitors competently. It is found that the active site geometry of the A-TIM complexes is less compact and more solvent exposed, as in wild-type TIM. This correlates with the observation that the catalytic efficiency of A-TIM for interconverting the TIM substrates is too low to be detected. It is also shown that the A-TIM active site can bind compounds which do not bind to wild-type TIM and which are completely different from the normal TIM substrate, like a citrate molecule. The binding of this citrate molecule is stabilized by hydrogen bonding interactions with the new binding groove.
一种具有新工程化结合凹槽的磷酸丙糖异构酶(TIM)单体变体已得到进一步表征。在该变体(ml8bTIM)中,磷酸结合环被缩短,导致结合位点更加伸展。在此报道,在ml8bTIM的V233A变体(A-TIM)中,野生型TIM活性位点的三个重要特性得以恢复:(i)环7的结构特性,(ii)环7和环8之间保守水分子的结合位点,以及(iii)磷酸部分的结合位点。结果表明,A-TIM的活性位点能够有效结合TIM过渡态类似物和自杀抑制剂。研究发现,与野生型TIM一样,A-TIM复合物的活性位点几何结构不那么紧凑,且更多地暴露于溶剂中。这与观察到的A-TIM催化TIM底物相互转化的效率过低而无法检测到这一现象相关。还表明,A-TIM活性位点能够结合不与野生型TIM结合且与正常TIM底物完全不同的化合物,如柠檬酸盐分子。该柠檬酸盐分子的结合通过与新结合凹槽的氢键相互作用得以稳定。