Salin Mikko, Kapetaniou Evangelia G, Vaismaa Matti, Lajunen Marja, Casteleijn Marco G, Neubauer Peter, Salmon Laurent, Wierenga Rik K
Department of Biochemistry, PO Box 3000, 90014 University of Oulu, Finland.
Acta Crystallogr D Biol Crystallogr. 2010 Aug;66(Pt 8):934-44. doi: 10.1107/S0907444910025710. Epub 2010 Jul 14.
Crystallographic binding studies have been carried out to probe the active-site binding properties of a monomeric variant (A-TIM) of triosephosphate isomerase (TIM). These binding studies are part of a structure-based directed-evolution project aimed towards changing the substrate specificity of monomeric TIM and are therefore aimed at finding binders which are substrate-like molecules. A-TIM has a modified more extended binding pocket between loop-7 and loop-8 compared with wild-type TIM. The A-TIM crystals were grown in the presence of citrate, which is bound in the active site of each of the two molecules in the asymmetric unit. In this complex, the active-site loops loop-6 and loop-7 adopt the closed conformation, similar to that observed in liganded wild-type TIM. Extensive crystal-soaking protocols have been developed to flush the bound citrate out of the active-site pocket of both molecules and the crystal structure shows that the unliganded open conformation of the A-TIM active site is the same as in unliganded wild-type TIM. It is also shown that sulfonate compounds corresponding to the transition-state analogue 2-phosphoglycolate bind in the active site, which has a closed conformation. It is also shown that the new binding pocket of A-TIM can bind 3-phosphoglycerate (3PGA; an analogue of a C4-sugar phosphate) and 4-phospho-D-erythronohydroxamic acid (4PEH; an analogue of a C5-sugar phosphate). Therefore, these studies have provided a rationale for starting directed-evolution experiments aimed at generating the catalytic properties of a C5-sugar phosphate isomerase on the A-TIM framework.
已开展晶体学结合研究,以探究磷酸丙糖异构酶(TIM)的单体变体(A-TIM)的活性位点结合特性。这些结合研究是基于结构的定向进化项目的一部分,旨在改变单体TIM的底物特异性,因此旨在寻找类似底物分子的结合剂。与野生型TIM相比,A-TIM在环7和环8之间有一个经过修饰的更扩展的结合口袋。A-TIM晶体在柠檬酸盐存在下生长,柠檬酸盐结合在不对称单元中两个分子各自的活性位点。在这个复合物中,活性位点环6和环7采用封闭构象,类似于在结合配体的野生型TIM中观察到的构象。已开发出广泛的晶体浸泡方案,以将结合的柠檬酸盐从两个分子的活性位点口袋中冲洗出来,晶体结构表明,A-TIM活性位点的未结合配体的开放构象与未结合配体的野生型TIM相同。还表明,与过渡态类似物2-磷酸乙醇酸对应的磺酸盐化合物结合在具有封闭构象的活性位点。还表明,A-TIM的新结合口袋可以结合3-磷酸甘油酸(3PGA;一种C4-糖磷酸酯的类似物)和4-磷酸-D-赤藓糖异羟肟酸(4PEH;一种C5-糖磷酸酯的类似物)。因此,这些研究为启动旨在在A-TIM框架上产生C5-糖磷酸异构酶催化特性的定向进化实验提供了理论依据。