McGrath J W, Wisdom G B, McMullan G, Larkin M J, Quinn J P
School of Biology and Biochemistry, Queen's University of Belfast, Northern Ireland.
Eur J Biochem. 1995 Nov 15;234(1):225-30. doi: 10.1111/j.1432-1033.1995.225_c.x.
A novel, inducible, carbon-phosphorus bond-cleavage enzyme, phosphonoacetate hydrolase, was purified from cells of Pseudomonas fluorescens 23F grown on phosphonoacetate. The native enzyme had a molecular mass of approximately 80 kDa and, upon SDS/PAGE, yielded a homogenous protein band with an apparent molecular mass of about 38 kDa. Activity of purified phosphonoacetate hydrolase was Zn2+ dependent and showed pH and temperature optima of approximately 7.8 and 37 degrees C, respectively. The purified enzyme had an apparent Km of 1.25 mM for its sole substrate phosphonoacetate, and was inhibited by the structural analogues 3-phosphonopropionate and phosphonoformate. The NH2-terminal sequence of the first 19 amino acids displayed no significant similarity to other databank sequences.
从在膦酰乙酸上生长的荧光假单胞菌23F细胞中纯化出一种新型的、可诱导的碳-磷键裂解酶——膦酰乙酸水解酶。天然酶的分子量约为80 kDa,经SDS/PAGE分析,产生一条表观分子量约为38 kDa的均一蛋白条带。纯化的膦酰乙酸水解酶的活性依赖于Zn2+,其pH和温度最佳值分别约为7.8和37℃。纯化的酶对其唯一底物膦酰乙酸的表观Km为1.25 mM,并受到结构类似物3-膦酰丙酸和膦酰甲酸的抑制。前19个氨基酸的NH2末端序列与其他数据库序列没有显著相似性。