Borchert T V, Pratt K, Zeelen J P, Callens M, Noble M E, Opperdoes F R, Michels P A, Wierenga R K
European Molecular Biology Laboratory, Heidelberg, Federal Republic of Germany.
Eur J Biochem. 1993 Feb 1;211(3):703-10. doi: 10.1111/j.1432-1033.1993.tb17599.x.
In this paper, the successful expression of trypanosomal triosephosphate isomerase (TIM) from Trypanosoma brucei brucei to high yield in Escherichia coli, using a T7-polymerase-based expression system, is described. Overexpressed trypanosomal TIM is fully active. The measured physicochemical properties of this recombinant TIM and TIM purified from trypanosomes are indistinguishable. Crystals of recombinant TIM have been grown in the presence of 2.4 M ammonium sulphate under the same conditions as for trypanosomally expressed TIM. The recombinant TIM crystal structure has been refined at 0.23 nm resolution; no differences were detected between this structure and the original crystal structure. A TIM mutant was made in which a unique dimer-interface histidine residue (His47) was changed into an asparagine. This variant ([H47N]TIM) could be expressed and purified to homogeneity by a procedure which was somewhat different from the purification of recombinant wild-type TIM. It is shown that the [H47N]TIM dimer is considerably less stable than wild-type trypanosomal TIM. The catalytic activity of [H47N]TIM is concentration dependent. The dilution-dependent inactivation is reversible. His47 is involved in a water-mediated hydrogen bond with Asp385 of the other subunit. The lower stability of the [H47N]TIM dimer implies that this water-mediated hydrogen bond is important for the stability of the TIM dimer.
本文描述了利用基于T7聚合酶的表达系统,成功地在大肠杆菌中高产表达布氏布氏锥虫的磷酸丙糖异构酶(TIM)。过表达的锥虫TIM具有完全活性。所测定的该重组TIM与从锥虫中纯化的TIM的物理化学性质无法区分。重组TIM晶体已在2.4 M硫酸铵存在下,于与锥虫表达的TIM相同的条件下生长。重组TIM晶体结构已精修至0.23 nm分辨率;该结构与原始晶体结构未检测到差异。构建了一个TIM突变体,其中一个独特的二聚体界面组氨酸残基(His47)被替换为天冬酰胺。该变体([H47N]TIM)可以通过一种与重组野生型TIM纯化方法略有不同的程序进行表达和纯化至均一性。结果表明,[H47N]TIM二聚体的稳定性远低于野生型锥虫TIM。[H47N]TIM的催化活性与浓度有关。稀释依赖性失活是可逆的。His47与另一个亚基的Asp385形成水介导的氢键。[H47N]TIM二聚体较低的稳定性表明这种水介导的氢键对TIM二聚体的稳定性很重要。