Hosomi S, Tara H, Terada T, Mizoguchi T
Laboratory of Biochemistry, Faculty of Pharmaceutical Sciences, Osaka University, Japan.
Biochem Med Metab Biol. 1989 Aug;42(1):52-9. doi: 10.1016/0885-4505(89)90040-6.
The rate of the conversion of ribose 5-phosphate to hexose 6-phosphates by reaction of the non-oxidative pentose phosphate pathway was measured in the presence of various biological materials. Of 22 compounds tested, PRPP and ADP markedly inhibited the formation of hexose 6-phosphates from ribose 5-phosphate. The transketolase activity in beef liver enzyme preparation was extremely inhibited by PRPP and ADP, but the transaldolase activity was not inhibited. The mode of inhibition of transketolase by PRPP and ADP was a competitive one. The Ki value for PRPP was 0.14 mM and that for ADP 0.54 mM with respect to transketolase. We discuss the possible regulatory roles of ADP and PRPP on pentose phosphate metabolism in the pentose phosphate pathway.
在各种生物材料存在的情况下,测定了通过非氧化戊糖磷酸途径的反应将5-磷酸核糖转化为6-磷酸己糖的速率。在测试的22种化合物中,PRPP和ADP显著抑制了由5-磷酸核糖形成6-磷酸己糖的过程。PRPP和ADP对牛肝酶制剂中的转酮醇酶活性有极强的抑制作用,但对转醛醇酶活性没有抑制作用。PRPP和ADP对转酮醇酶的抑制模式是竞争性的。就转酮醇酶而言,PRPP的Ki值为0.14 mM,ADP的Ki值为0.54 mM。我们讨论了ADP和PRPP对戊糖磷酸途径中戊糖磷酸代谢可能的调节作用。