Park I S, Hausinger R P
Department of Microbiology, Michigan State University, East Lansing 48824-1101.
Protein Sci. 1993 Jun;2(6):1034-41. doi: 10.1002/pro.5560020616.
Comparison of six urease sequences revealed the presence of 10 conserved histidine residues (H96 in the gamma subunit, H39 and H41 in beta, and H134, H136, H219, H246, H312, H320, and H321 in the alpha subunit of the Klebsiella aerogenes enzyme). Each of these residues in K. aerogenes urease was substituted with alanine by site-directed mutagenesis, and the mutant proteins were purified and characterized in order to identify essential histidine residues and assign their roles. The gamma H96A, beta H39A, beta H41A, alpha H312A, and alpha H321A mutant proteins possess activities and nickel contents similar to wild-type enzyme, suggesting that these residues are not essential for substrate binding, catalysis, or metal binding. In contrast, the alpha H134A, alpha H136A, and alpha H246A proteins exhibit no detectable activity and possess 53%, 6%, and 21% of the nickel content of wild-type enzyme. These results are consistent with alpha H134, alpha H136, and alpha H246 functioning as nickel ligands. The alpha H219A protein is active and has nickel (approximately 1.9% and approximately 80%, respectively, when compared to wild-type protein) but exhibits a very high Km value (1,100 +/- 40 mM compared to 2.3 +/- 0.2 mM for the wild-type enzyme). These results are compatible with alpha H219 having some role in facilitating substrate binding. Finally, the alpha H320A protein (Km = 8.3 +/- 0.2 mM) only displays approximately 0.003% of the wild-type enzyme activity, despite having a normal nickel content.(ABSTRACT TRUNCATED AT 250 WORDS)
对六个脲酶序列的比较显示,存在10个保守的组氨酸残基(产气克雷伯菌酶的γ亚基中的H96、β亚基中的H39和H41,以及α亚基中的H134、H136、H219、H246、H312、H320和H321)。通过定点诱变将产气克雷伯菌脲酶中的每个这些残基用丙氨酸替代,然后对突变蛋白进行纯化和表征,以鉴定必需的组氨酸残基并确定其作用。γH96A、βH39A、βH41A、αH312A和αH321A突变蛋白具有与野生型酶相似的活性和镍含量,这表明这些残基对于底物结合、催化或金属结合并非必需。相比之下,αH134A、αH136A和αH246A蛋白未显示出可检测到的活性,并且镍含量分别为野生型酶的53%、6%和21%。这些结果与αH134、αH136和αH246作为镍配体发挥作用一致。αH219A蛋白具有活性且含有镍(与野生型蛋白相比分别约为1.9%和约80%),但表现出非常高的Km值(1100±40 mM,而野生型酶为2.3±0.2 mM)。这些结果与αH219在促进底物结合方面具有某种作用相符。最后,αH320A蛋白(Km = 8.3±0.2 mM)尽管镍含量正常,但仅显示出野生型酶活性的约0.003%。(摘要截短于250字)