Pieper M, Betz M, Budisa N, Gomis-Rüth F X, Bode W, Tschesche H
Fakultät für Chemie und Biochemie, Universität Bielefeld, Germany.
J Protein Chem. 1997 Aug;16(6):637-50. doi: 10.1023/a:1026327125333.
Matrix metalloproteinases belong to the superfamily of metzincins containing, besides a similar topology and a strictly conserved zinc environment, a 1,4-tight turn with a strictly conserved methionine residue at position three (the so called Met-turn [Bode et. al. (1993) FEBS 331, 134-140; Stöcker et al. (1995) Protein Sci. 4, 823-840]. The distal S-CH3 moiety of this methionine residue forms the hydrophobic basement of the three His residues liganding the catalytic zinc ion. To assess the importance of this methionine, we have expressed the catalytic domain of neutrophil collagenase (rHNC, residues Met80-Gly242) in the methionine auxotrophic Escherichia coli strain B834[DE3](hsd metB), with the two methionine residues replaced by selenomethionine. Complete replacement was confirmed by amino acid analysis and electrospray mass spectrometry. The folded and purified enzyme retained its catalytic activity, but showed modifications which are reflected in change kinetic parameters. The Met215SeMet substitution caused a decrease in conformational stability upon area denaturation. The X-ray crystal structure of this selenomethionine rHNC was virtually identical to that of the wild-type catalytic domain except for a very faint local disturbance around the sulfur-seleno substitution site.
基质金属蛋白酶属于金属锌酶超家族,除了具有相似的拓扑结构和严格保守的锌环境外,还含有一个1,4-紧密转角,在第三位有一个严格保守的甲硫氨酸残基(即所谓的甲硫氨酸转角[博德等人(1993年)《欧洲生物化学学会联合会快报》331, 134 - 140;施托克等人(1995年)《蛋白质科学》4, 823 - 840])。这个甲硫氨酸残基的远端S-CH3部分构成了与催化锌离子配位的三个组氨酸残基的疏水基底。为了评估这个甲硫氨酸的重要性,我们在甲硫氨酸营养缺陷型大肠杆菌菌株B834[DE3](hsd metB)中表达了中性粒细胞胶原酶的催化结构域(rHNC,甲硫氨酸80 - 甘氨酸242残基),其中两个甲硫氨酸残基被硒代甲硫氨酸取代。通过氨基酸分析和电喷雾质谱法证实了完全取代。折叠并纯化后的酶保留了其催化活性,但表现出的修饰反映在动力学参数的变化上。甲硫氨酸215被硒代甲硫氨酸取代导致在区域变性时构象稳定性下降。除了在硫 - 硒取代位点周围有非常微弱的局部干扰外,这种硒代甲硫氨酸rHNC的X射线晶体结构与野生型催化结构域的几乎相同。