Kasvinsky P J
J Biol Chem. 1982 Sep 25;257(18):10805-10.
Kinetic studies of the inhibition of rabbit muscle phosphorylase a D-glucan:orthophosphate alpha-D-glucosyltransferase (EC 2.4.1.1) by various glucose derivatives indicate that glucose derivatives in the chair conformation (glucose, 2-deoxyglucose, glucosyl fluoride, and 1-O-methylglucose) stabilize the "T" form of phosphorylase a, whereas those in the half-chair conformation (1,5-gluconolactone and glucal) bind to the "R" form. Derivatives which stabilized the T form were generally competitive inhibitors of phosphate binding, were synergistic with caffeine, and weakened AMP binding. Derivatives which bound to the R form were noncompetitive with respect to Pi in the presence of AMP. The mechanism of inhibition of the R form by gluconolactone and glucal appears to depend upon the presence or absence of AMP. In the presence of the nucleotide, gluconolactone is probably a linear mixed-type inhibitor. However, in the absence of AMP, simple linear uncompetitive inhibition was apparent. Since gluconolactone is thought to be an analogue of the substrate transition state of the phosphorylase reaction, a major function of nucleotide in activating phosphorylase may be the formation of the transition state binding pocket in the binary enzyme-glycogen complex. In the absence of AMP, glucal was competitive with respect to phosphate. However, in the presence of nucleotide, simple intersecting linear noncompetitive inhibition was observed. The results indicate that a second function of AMP is the formation of the phosphate binding pocket in the enzyme-glucal-glycogen-AMP complex. This conclusion is consistent with the crystallographic and structural data available at present.
对多种葡萄糖衍生物抑制兔肌肉磷酸化酶a D-葡聚糖:正磷酸α-D-葡萄糖基转移酶(EC 2.4.1.1)的动力学研究表明,呈椅式构象的葡萄糖衍生物(葡萄糖、2-脱氧葡萄糖、氟代葡萄糖和1-O-甲基葡萄糖)能稳定磷酸化酶a的“T”型,而呈半椅式构象的衍生物(1,5-葡糖酸内酯和葡烯糖)则与“R”型结合。稳定T型的衍生物通常是磷酸盐结合的竞争性抑制剂,与咖啡因具有协同作用,并削弱AMP结合。与R型结合的衍生物在有AMP存在时对Pi是非竞争性的。葡糖酸内酯和葡烯糖对R型的抑制机制似乎取决于AMP的存在与否。在有核苷酸存在时,葡糖酸内酯可能是一种线性混合型抑制剂。然而,在没有AMP时,明显是简单的线性非竞争性抑制。由于葡糖酸内酯被认为是磷酸化酶反应底物过渡态的类似物,核苷酸激活磷酸化酶的一个主要功能可能是在二元酶-糖原复合物中形成过渡态结合口袋。在没有AMP时,葡烯糖对磷酸盐具有竞争性。然而,在有核苷酸存在时,观察到简单的交叉线性非竞争性抑制。结果表明,AMP的第二个功能是在酶-葡烯糖-糖原-AMP复合物中形成磷酸盐结合口袋。这一结论与目前可得的晶体学和结构数据一致。