Sriwanthana B, Mobley H L
Department of Medicine, University of Maryland School of Medicine, Baltimore 21201.
Infect Immun. 1993 Jun;61(6):2570-7. doi: 10.1128/iai.61.6.2570-2577.1993.
Proteus mirabilis urease, a nickel-containing enzyme, has been established as a critical virulence determinant in urinary tract infection. An amino acid sequence (residues 308 to 327: TVDEHLDMLMVCHHLDPSIP) within the large urease subunit, UreC, is highly conserved for every urease examined thus far and has been suggested to reside within the enzyme active site. Histidine residues have been postulated to play a role in catalysis by coordinating Ni2+ ions. To test this hypothesis, oligonucleotide-directed mutagenesis was used to change amino acid His-320 to Leu-320 within UreC. The base change (CAT for His-320 to CTT for Leu-320) was confirmed by DNA sequencing. The recombinant and mutant proteins were expressed at similar levels in Escherichia coli as detected by Western blotting (immunoblotting) of denaturing and nondenaturing gels. Specific activities of the enzymes were quantitated after partial purification. Strains expressing the mutant enzyme showed no detectable activity, whereas strains expressing the recombinant enzyme hydrolyzed urea at 149 mumol of NH3 per min per mg of protein. In addition, the mutant enzyme was able to incorporate only about one-half (58%) of the amount of 63Ni2+ incorporated by the active recombinant enzyme. While the mutation of His-320 to Leu-320 within UreC does not affect expression or assembly of urease polypeptide subunits UreA, UreB, and UreC His-320 of UreC is required for urea hydrolysis and proper incorporation of Ni2+ into apoenzyme.
奇异变形杆菌脲酶是一种含镍酶,已被确认为尿路感染中的关键毒力决定因素。在大脲酶亚基UreC内的一段氨基酸序列(第308至327位残基:TVDEHLDMLMVCHHLDPSIP),对于迄今为止检测的每种脲酶而言都高度保守,并且有人认为它位于酶的活性位点内。据推测,组氨酸残基通过与Ni2+离子配位在催化过程中发挥作用。为了验证这一假设,使用寡核苷酸定向诱变将UreC内的氨基酸His-320变为Leu-320。通过DNA测序证实了碱基变化(His-320的CAT变为Leu-320的CTT)。通过变性和非变性凝胶的蛋白质免疫印迹法(免疫印迹)检测,重组蛋白和突变蛋白在大肠杆菌中的表达水平相似。在部分纯化后对酶的比活性进行了定量。表达突变酶的菌株未检测到活性,而表达重组酶的菌株以每分钟每毫克蛋白质149μmol NH3的速度水解尿素。此外,突变酶仅能结合活性重组酶所结合的63Ni2+量的约一半(58%)。虽然UreC内His-320突变为Leu-320不影响脲酶多肽亚基UreA、UreB和UreC的表达或组装,但UreC的His-320是尿素水解以及将Ni2+正确掺入脱辅基酶所必需的。