Racker E, Johnson J H, Blackwell M T
J Biol Chem. 1983 Mar 25;258(6):3702-5.
Glycolysis in Ehrlich ascites tumor cells suspended in buffer containing 5 mM Pi was 50% inhibited by ouabain. In the absence of Pi the inhibition was less striking. Permeabilization of the cells with filipin abolished glycolysis, but glycolysis was restored by addition of Pi and AMP. Neither ouabain nor quercetin inhibited glycolysis in these permeabilized cells. We conclude that quercetin did not inhibit hexokinase sufficiently to affect glycolysis. An extract of Ehrlich ascites tumor cells glycolyzed weakly unless either Pi or an ATPase (e.g. (Na+K+)-ATPase) was added. The low rate of glycolysis of the extract was even further reduced when an endogenous ATPase was removed by precipitation with CaATP. The glycolytic activity of this ATPase-deficient extract was restored by addition of purified (Na+K+)-ATPase or of CaATP-precipitable ATPase. Addition of hexokinase without Pi did not restore glycolytic activity to the extract. An explanation for the contradictory conclusions by Bustamante, E., Morris, H.P., and Pedersen, P.L. (J. Biol. Chem. (1981) 265, 8699-8704) is presented.
悬浮于含5 mM磷酸的缓冲液中的艾氏腹水癌细胞的糖酵解被哇巴因抑制了50%。在没有磷酸的情况下,抑制作用不那么明显。用制霉菌素使细胞通透化可消除糖酵解,但加入磷酸和AMP后糖酵解得以恢复。在这些通透化细胞中,哇巴因和槲皮素均不抑制糖酵解。我们得出结论,槲皮素对己糖激酶的抑制作用不足以影响糖酵解。艾氏腹水癌细胞提取物的糖酵解作用微弱,除非加入磷酸或一种ATP酶(如(钠+钾)-ATP酶)。当通过用CaATP沉淀去除内源性ATP酶时,提取物的低糖酵解速率甚至进一步降低。通过加入纯化的(钠+钾)-ATP酶或可被CaATP沉淀的ATP酶,这种缺乏ATP酶的提取物的糖酵解活性得以恢复。在没有磷酸的情况下加入己糖激酶并不能使提取物的糖酵解活性恢复。本文给出了对布斯塔曼特、E.、莫里斯、H.P.和佩德森、P.L.(《生物化学杂志》(1981年)265卷,8699 - 8704页)相互矛盾结论的一种解释。