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Cooperative Kinetics of human prostatic acid phosphatase

机译:人前列腺酸性磷酸酶的协同动力学

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The steady-state kinetics of hydrolysis reaction catalysed by human prostatic acid phosphatase (PAP) by using 1-naphthyl phosphate, phenyl phosphate and phosphotyrosine as substrates has been studied at pH 5.5. The substrate binding curves were sigmoidal and Hill cooperation coefficient h was higher than 1 for each of the examined compounds. Thus, human prostatic acid phosphatase kinetics exhibits positive cooperativity towards the studied substrates. The extent of cooperativity was found to depend on the substrate used and on enzyme concentration. The highest cooperativity of PAP was observed for 1-naphthyl phosphate and the lowest for phosphotyrosine. When prostatic phosphatase concentration increased, Hill cooperation coefficient (h) and half saturation constant (K_(0.5)) both grew, but the catalytic constant (K_(cat)) remained constant, for each of the substrates studied. Ligand-induced association-dissociation equilibrium of the active oligomeric species (monomer-dimer-tetramer-oligomers) is suggested.
机译:在pH 5.5下研究了人前列腺酸磷酸酶(PAP)以磷酸1-萘酯,磷酸苯酯和磷酸酪氨酸为底物催化的水解反应的稳态动力学。底物结合曲线为S形,每种被测化合物的希尔配合系数h均高于1。因此,人前列腺酸磷酸酶动力学对所研究的底物表现出正的协同作用。发现协同作用的程度取决于所用的底物和酶的浓度。对于磷酸1-萘酯,PAP的协同性最高,而对于磷酸酪氨酸,则最低。当前列腺磷酸酶浓度增加时,Hill协同系数(h)和半饱和常数(K_(0.5))均增加,但催化常数(K_(cat))保持恒定。建议配体诱导的活性低聚物质(单体-二聚体-四聚体-低​​聚体)的缔合-解离平衡。

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