Oikonomakos N G, Zographos S E, Johnson L N, Papageorgiou A C, Acharya K R
Institute of Biological Research & Biotechnology, National Hellenic Research Foundation, Athens, Greece.
J Mol Biol. 1995 Dec 15;254(5):900-17. doi: 10.1006/jmbi.1995.0665.
Kinetic and crystallographic studies have characterized the effect of 2-deoxy-glucose 6-phosphate on the catalytic and structural properties of glycogen phosphorylase b. Previous work on the binding of glucose 6-phosphate, a potent physiological inhibitor of the enzyme, to T state phosphorylase b in the crystal showed that the inhibitor binds at the allosteric site and induces substantial conformational changes that affect the subunit-subunit interface. The hydrogen-bond from the O-2 hydroxyl of glucose 6-phosphate to the main-chain oxygen of Val40' represents the only hydrogen bond from the sugar to the other subunit, and this interaction appears important for promoting a more "tensed" structure than native T state phosphorylase b. 2-Deoxy-glucose 6-phosphate acts competitively with both the activator AMP and the substrate glucose 1-phosphate, with Ki values of 0.53 mM and 1.23 mM, respectively. The binding of 2-deoxy-glucose 6-phosphate to T state glycogen phosphorylase b in the crystal, has been investigated and the complex phosphorylase b: 2-deoxy-glucose 6-phosphate has been refined to give a crystallographic R factor of 17.3%, for data between 8 A and 2.3 A. 2-Deoxy-glucose 6-phosphate binds at the allosteric site as the a anomer and adopts a different conformation compared to glucose 6-phosphate. The two conformations differ by 160 degrees in the torsion angle about the C-5-C-6 bond. The contacts from the phosphate group are essentially identical to those made by the phosphate of glucose 6-phosphate but the 2-deoxy glucosyl moiety binds in a quite different orientation compared to the glucosyl of glucose 6-phosphate. 2-Deoxy-glucose 6-phosphate can be accommodated in the allosteric site with very little change in the protein, while structural comparisons show that the phosphorylase b: 2-deoxy-glucose 6-phosphate complex structure is overall more similar to a glucose-like complex than to the Glc-6-P complex structure.
动力学和晶体学研究已对6-磷酸-2-脱氧葡萄糖对糖原磷酸化酶b的催化和结构特性的影响进行了表征。先前关于6-磷酸葡萄糖(该酶的一种有效的生理抑制剂)与晶体中T态磷酸化酶b结合的研究表明,该抑制剂结合在别构位点,并诱导了影响亚基-亚基界面的大量构象变化。6-磷酸葡萄糖的O-2羟基与Val40'主链氧之间的氢键是糖与另一个亚基之间唯一的氢键,这种相互作用对于促进比天然T态磷酸化酶b更“紧张”的结构似乎很重要。6-磷酸-2-脱氧葡萄糖与激活剂AMP和底物1-磷酸葡萄糖均具有竞争性作用,其Ki值分别为0.53 mM和1.23 mM。已对晶体中6-磷酸-2-脱氧葡萄糖与T态糖原磷酸化酶b的结合进行了研究,并且已对磷酸化酶b:6-磷酸-2-脱氧葡萄糖复合物进行了精修,对于8 Å至2.3 Å之间的数据,其晶体学R因子为17.3%。6-磷酸-2-脱氧葡萄糖以α异头物形式结合在别构位点,与6-磷酸葡萄糖相比采用不同的构象。两种构象在C-5-C-6键的扭转角上相差160度。磷酸基团的接触与6-磷酸葡萄糖的磷酸基团基本相同,但2-脱氧葡萄糖部分与6-磷酸葡萄糖的葡萄糖部分相比以完全不同的方向结合。6-磷酸-2-脱氧葡萄糖可以容纳在别构位点,而蛋白质几乎没有变化,同时结构比较表明,磷酸化酶b:6-磷酸-2-脱氧葡萄糖复合物结构总体上与类葡萄糖复合物比与6-磷酸葡萄糖复合物结构更相似。