Abstract :
To explore how to calculate the effect of solanine on the Michaelis constant and the maximum reaction rate of NAT, high performance liquid chromatography (HPLC) was used, with 2-AF as substrate, and the rate at which 2-AF is acetylated into 2-AAF in intact HepG2 cells or in the cytoplasm of HepG2 cells as the reaction rate. The double reciprocal plot was made, with 1/S (reciprocal of the concentration of the substrate 2-AF) plotted against 1/V (reciprocal of the reaction rate), to yield a regression equation for calculating Km and Vmax. With intact HepG2 cells, the Km and Vmax for the negative control are 2.37times10-3plusmn8.37times10-5 mM and 9.16times10-4plusmn7.54times10-5 nmol/106 cells, respectively, and that the Km and Vmax for the solanine group are 2.22times10-3plusmn9.05times10-5 mM and 5.14times10-4plusmn3.72times10-5 nmol/106 cells, respectively. For the cytoplasm of HepG2 cells, the Km and Vmax for the negative control are 8.95times10-3plusmn2.61times10-4 mM and 2.55times10-6plusmn1.92times10-8 nmol/ minmiddotmg protein, respectively, and the Km and Vmax of the solanine group are 9.48times10-3plusmn3.63times10-4 Mm and 2.43times10-6plusmn1.32times10-8 nmol/minmiddotmg protein. Statistical analysis showed that, for both intact HepG2 cells and cytoplasm of HepG2 cells, Km does not differ significantly between the negative control and the solanine groups, but Vmax does differ significantly for these groups (P<0.05). Solanine is a non-competitive inhibitor for the 2-AF substrate of NAT.
Keywords :
biochemistry; cellular biophysics; chromatography; drugs; enzymes; molecular biophysics; reaction rate constants; regression analysis; 2-AAF; 2-AF acetylation rate; HPLC; HepG2 cell cytoplasm; Michaelis constant; N-acetyltransferases; NAT maximum reaction rate; arylamine; concentration reciprocal; double reciprocal plot; high performance liquid chromatography; noncompetitive inhibitor; phase II drug metabolic enzymes; reaction rate reciprocal; regression equation; solanine effects; statistical analysis; Bovine; Cancer; Chemical analysis; Inhibitors; Kinetic theory; Neoplasms; Network address translation; Pancreas; Proteins; Research and development;