Sygusch J, Madsen N B, Kasvinsky P J, Fletterick R J
Proc Natl Acad Sci U S A. 1977 Nov;74(11):4757-61. doi: 10.1073/pnas.74.11.4757.
The pyridoxal 5'-phosphate cofactor of glycogen phosphorylase a (1,4-alpha-D-glucan:orthophosphate alpha-glucosyltransferase, EC2.4.1.1.) has been positioned on the protomer with x-ray diffraction data, chemical markers, and sequence information. The electron density was computed from 3.0-A resolution phases calculated from four heavy-atom derivatives. The cofactor is buried inside the protomer adjacent to the glucose-binding site. The phosphoryl substrates Pi and glucose-1-P each bind at two sites on the protomer. At low concentrations, Pi and glucose-1-P bind in the same location as does the allosteric effector AMP, near the monomer-monomer interface and some 30 A from the glucose site. At high concentrations glucose-1-P also binds strongly at the glucose site, with its phosphate only 7.2 A from that of the cofactor. Inorganic phosphate can also bind at this site. Implications for the participation of the pyridoxal phosphate in the catalytic mechanism are discussed in the light of these structural findings as well as the wealth of indirect evidence in the literature.
糖原磷酸化酶a(1,4-α-D-葡聚糖:正磷酸α-葡糖基转移酶,EC2.4.1.1.)的磷酸吡哆醛辅因子已通过X射线衍射数据、化学标记和序列信息定位在原体上。电子密度是根据由四种重原子衍生物计算出的3.0埃分辨率相位计算得出的。辅因子埋在原体内部,靠近葡萄糖结合位点。磷酸化底物Pi和葡萄糖-1-P各自在原体上的两个位点结合。在低浓度下,Pi和葡萄糖-1-P与变构效应剂AMP结合在相同位置,靠近单体-单体界面,距离葡萄糖位点约30埃。在高浓度下,葡萄糖-1-P也在葡萄糖位点强烈结合,其磷酸基团与辅因子的磷酸基团仅相距7.2埃。无机磷酸盐也可结合在该位点。根据这些结构发现以及文献中大量的间接证据,讨论了磷酸吡哆醛参与催化机制的意义。