Mackay E M, Pateman J A
J Gen Microbiol. 1980 Jan;116(1):249-51. doi: 10.1099/00221287-116-1-249.
The addition of nickel ions restored urease activity in vivo and ability to grow on urea in a mutant strain of Aspergillus nidulans otherwise unable to utilize urea. This train carries a mutation in the ureD locus, one of four loci involved in urea utilization. No other urease-deficient strains tested responded to the presence of nickel ions. The analogous characteristics of the ureD mutant and the nitrate reductase and xanthine dehydrogenase associated cnxE mutants in Aspergillus nidulans are discussed. It is postulated that the ureD locus is in some way involved in the production or incorporation of a nickel cofactor essential for urease activity.
在构巢曲霉的一个突变菌株中,添加镍离子可恢复其体内脲酶活性以及在尿素上生长的能力,该突变菌株原本无法利用尿素。此菌株在ureD基因座发生了突变,ureD基因座是参与尿素利用的四个基因座之一。测试的其他脲酶缺陷菌株对镍离子的存在均无反应。本文讨论了ureD突变体与构巢曲霉中硝酸盐还原酶和黄嘌呤脱氢酶相关的cnxE突变体的类似特征。据推测,ureD基因座以某种方式参与了脲酶活性所必需的镍辅因子的产生或掺入。