Misono Haruo, Maeda Hiroshi, Tuda Kouiti, Ueshima Sakuko, Miyazaki Naoto, Nagata Shinji
Department of Bioresources Science, Kochi University, Nankoku, Kochi 783-8502, Japan.
Appl Environ Microbiol. 2005 Aug;71(8):4602-9. doi: 10.1128/AEM.71.8.4602-4609.2005.
An inducible phenylserine aldolase (L-threo-3-phenylserine benzaldehyde-lyase, EC 4.1.2.26), which catalyzes the cleavage of L-3-phenylserine to yield benzaldehyde and glycine, was purified to homogeneity from a crude extract of Pseudomonas putida 24-1 isolated from soil. The enzyme was a hexamer with the apparent subunit molecular mass of 38 kDa and contained 0.7 mol of pyridoxal 5' phosphate per mol of the subunit. The enzyme exhibited absorption maxima at 280 and 420 nm. The maximal activity was obtained at about pH 8.5. The enzyme acted on L-threo-3-phenylserine (Km, 1.3 mM), l-erythro-3-phenylserine (Km, 4.6 mM), l-threonine (Km, 29 mM), and L-allo-threonine (Km, 22 mM). In the reverse reaction, threo- and erythro- forms of L-3-phenylserine were produced from benzaldehyde and glycine. The optimum pH for the reverse reaction was 7.5. The structural gene coding for the phenylserine aldolase from Pseudomonas putida 24-1 was cloned and overexpressed in Escherichia coli cells. The nucleotide sequence of the phenylserine aldolase gene encoded a peptide containing 357 amino acids with a calculated molecular mass of 37.4 kDa. The recombinant enzyme was purified and characterized. Site-directed mutagenesis experiments showed that replacement of K213 with Q resulted in a loss of the enzyme activity, with a disappearance of the absorption maximum at 420 nm. Thus, K213 of the enzyme probably functions as an essential catalytic residue, forming a Schiff base with pyridoxal 5'-phosphate.
从土壤中分离得到的恶臭假单胞菌24-1的粗提物中纯化出一种可诱导的苯丝氨酸醛缩酶(L-苏式-3-苯丝氨酸苯甲醛裂解酶,EC 4.1.2.26),该酶催化L-3-苯丝氨酸裂解生成苯甲醛和甘氨酸。该酶为六聚体,亚基表观分子量为38 kDa,每摩尔亚基含有0.7摩尔磷酸吡哆醛。该酶在280和420 nm处有吸收最大值。在pH约8.5时获得最大活性。该酶作用于L-苏式-3-苯丝氨酸(Km,1.3 mM)、L-赤式-3-苯丝氨酸(Km,4.6 mM)、L-苏氨酸(Km,29 mM)和L-别苏氨酸(Km,22 mM)。在逆反应中,苯甲醛和甘氨酸生成L-3-苯丝氨酸的苏式和赤式异构体。逆反应的最适pH为7.5。克隆了恶臭假单胞菌24-1苯丝氨酸醛缩酶的结构基因,并在大肠杆菌细胞中进行了过量表达。苯丝氨酸醛缩酶基因的核苷酸序列编码一个含357个氨基酸的肽段,计算分子量为37.4 kDa。对重组酶进行了纯化和表征。定点诱变实验表明,将K213替换为Q会导致酶活性丧失,420 nm处的吸收最大值消失。因此,该酶的K213可能作为一个必需的催化残基,与磷酸吡哆醛形成席夫碱。