Kakimoto S, Sumino Y, Kawahara K, Yamazaki E, Nakatsui I
Microbiology Research Laboratories, Takeda Chemical Industries, Osaka, Japan.
Appl Microbiol Biotechnol. 1990 Feb;32(5):538-43. doi: 10.1007/BF00173724.
Acid urease was purified to an electrophoretically homogeneous state, and the molecular weight was estimated to be 220,000. The enzyme consisted of three kinds of subunits, designated alpha, beta and gamma, with molecular weights of 67,000, 16,800 and 8600, respectively, in a (alpha 1 beta 2 gamma 1)2 structure. The isoelectric point of the enzyme was 4.8. The nickel content was found to be 1.9 atoms of nickel per alpha 1 beta 2 gamma 1 unit. The amino acid profile was different from those of known bacterial neutral ureases. The enzyme was most active at pH 2 and around 65 degrees C. It was stable between pH 3 and 9, and below 50 degrees C. The Km for urea was 2.7 mM at pH 2. The enzyme activity was inhibited by Ag+, Hg2+, Cu2+, p-chloromercuribenzoate and acetohydroxamate. The enzyme was separated into three subunits by reverse phase HPLC. The amino terminal amino acid sequences of the subunits alpha, beta and gamma were Ser-Phe-Asp-Met-, Met-Val-Pro-Gly- and Met-Arg-Leu-Thr-, respectively.
酸性脲酶被纯化至电泳纯状态,其分子量估计为220,000。该酶由三种亚基组成,分别命名为α、β和γ,分子量分别为67,000、16,800和8600,呈(α1β2γ1)2结构。该酶的等电点为4.8。发现每个α1β2γ1单元的镍含量为1.9个镍原子。其氨基酸谱与已知的细菌中性脲酶不同。该酶在pH 2和65℃左右时活性最高。在pH 3至9以及50℃以下时稳定。在pH 2时,尿素的Km值为2.7 mM。该酶的活性受到Ag+、Hg2+、Cu2+、对氯汞苯甲酸和乙酰氧肟酸的抑制。通过反相高效液相色谱法将该酶分离为三个亚基。亚基α、β和γ的氨基末端氨基酸序列分别为Ser-Phe-Asp-Met-、Met-Val-Pro-Gly-和Met-Arg-Leu-Thr-。