González F J, Fauste C, Burguillo F J, Dominguez A
Departamento de Química Física, Facultad de Farmacia, Universidad de Salamanca, Spain.
Biochim Biophys Acta. 1993 Mar 5;1162(1-2):17-27. doi: 10.1016/0167-4838(93)90122-8.
(1) The substrate specificities and types of inhibitors of a repressible acid phosphatase from the yeast Yarrowia lipolytica as solubilized enzyme, enzyme bound to cell-wall fragments and enzyme bound to the intact cell were found to be essentially the same. (2) A similar pattern for the activation of the enzymatic activity by ionic strength was found for solubilized enzyme, the enzyme in cell-wall fragments and the enzyme in intact cells. (3) v[S] studies with all three locations of the enzyme revealed non-linear Eadie-Hofstee plots with concave-up curves of the negative cooperativity type; these were correctly fitted with a rate equation of 2:2 degree polynomial quotient. In all cases, the same behaviour was obtained and no new kinetic properties were observed when the enzyme was bound to the cell-wall matrix with respect to the solubilized enzyme. (4) Inhibition by phosphate was characterized for the three locations of the enzyme by v[I] and v[S] studies. The same pattern of partial inhibition and non-Michaelian inhibition of 'non-competitive' nature was observed for all three forms. (5) The above results are interpreted in terms of the hypothesis that the cell wall of Y. lipolytica has a slight negative charge but behaves as a permeable matrix that does not lead to novel characteristics regarding the catalytic and regulatory properties shown by the enzyme molecule in free solution.
(1) 发现解溶酶、结合到细胞壁碎片上的酶以及结合到完整细胞上的酶,这三种形式的解脂耶氏酵母可阻遏酸性磷酸酶的底物特异性和抑制剂类型基本相同。(2) 对于解溶酶、细胞壁碎片中的酶以及完整细胞中的酶,发现离子强度对酶活性的激活呈现相似模式。(3) 对酶的所有三个位置进行的v[S]研究显示,伊迪-霍夫斯泰曲线呈非线性,为负协同性类型的上凹曲线;这些曲线能很好地拟合2:2次多项式商的速率方程。在所有情况下,当酶结合到细胞壁基质上时,与解溶酶相比,得到的行为相同,未观察到新的动力学特性。(4) 通过v[I]和v[S]研究对酶的三个位置的磷酸盐抑制作用进行了表征。对于所有三种形式,均观察到相同模式的部分抑制和“非竞争性”的非米氏抑制。(5) 上述结果依据以下假设进行解释:解脂耶氏酵母的细胞壁带有轻微负电荷,但表现为可渗透基质,不会导致酶分子在游离溶液中所显示的催化和调节特性出现新特征。