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糖原磷酸化酶在T态和R态下与过渡态类似物诺吉霉素四氮唑和磷酸盐形成的三元复合晶体结构。

Ternary complex crystal structures of glycogen phosphorylase with the transition state analogue nojirimycin tetrazole and phosphate in the T and R states.

作者信息

Mitchell E P, Withers S G, Ermert P, Vasella A T, Garman E F, Oikonomakos N G, Johnson L N

机构信息

Laboratory of Molecular Biophysics, University of Oxford, UK.

出版信息

Biochemistry. 1996 Jun 11;35(23):7341-55. doi: 10.1021/bi960072w.

Abstract

Catalysis by glycogen phosphorylase involves a mechanism in which binding of one substrate tightens the binding of the other substrate to produce a productive ternary enzyme-substrate complex. In this work the molecular basis for this synergism is probed in crystallographic studies on ternary complexes in which the glucosyl component is substituted by the putative transition state analogue nojirimycin tetrazole, a compound which has been established previously as a transition state analogue inhibitor for a number of glycosidases. Kinetic studies with glycogen phosphorylase showed that nojirimycin tetrazole is a competitive inhibitor with respect to glucose 1-phosphate and uncompetitive with respect to phosphate. Ki values for the phosphorylase-AMP-glycogen complex and the phosphorylase-AMP-glycogen-phosphate complexes are 700 microM and 53 microM, respectively, indicating that by itself norjirimycin tetrazole has poor affinity for glycogen phosphorylase but that phosphate substantially improves the binding of norjirimycin tetrazole. X-ray crystallographic binding studies to 2.4 A resolution with T state phosphorylase b crystals showed that nojirimycin tetrazole binds at the catalytic site and promotes the binding of phosphate through direct interactions. Phosphate binding is accompanied by conformational changes that bring a crucial arginine (Arg569) into the catalytic site. The positions of the phosphate oxygens were definitively established in X-ray crystallographic binding experiments at 100 K to 1.7 A resolution using synchrotron radiation. X-ray crystallographic binding studies at 2.5 A resolution with R state glycogen phosphorylase crystals showed that the protein atoms and water molecules in contact with the nojirimycin tetrazole and the phosphate are similar to those in the T state. In both T and R states the phosphate ion is within hydrogen-bonding distance of the cofactor pyridoxal 5'-phosphate group and in ionic contact with the N-1 atom of the tetrazole ring. The results are consistent with previous time-resolved structural studies on complexes with heptenitol and phosphate. The structural and kinetic results suggest that nojirimycin tetrazole in combination with phosphate exhibits properties consistent with a transition state analogue and demonstrate how one promotes the binding of the other.

摘要

糖原磷酸化酶的催化作用涉及一种机制,即一种底物的结合会增强另一种底物的结合,从而形成有活性的三元酶 - 底物复合物。在这项研究中,通过对三元复合物的晶体学研究来探究这种协同作用的分子基础,其中葡糖基成分被假定的过渡态类似物野尻霉素四唑取代,该化合物先前已被确定为多种糖苷酶的过渡态类似物抑制剂。对糖原磷酸化酶的动力学研究表明,野尻霉素四唑是1 - 磷酸葡萄糖的竞争性抑制剂,对磷酸是非竞争性抑制剂。磷酸化酶 - AMP - 糖原复合物和磷酸化酶 - AMP - 糖原 - 磷酸复合物的Ki值分别为700微摩尔和53微摩尔,这表明野尻霉素四唑本身对糖原磷酸化酶的亲和力较差,但磷酸可显著提高野尻霉素四唑的结合能力。对T态磷酸化酶b晶体进行的分辨率为2.4埃的X射线晶体学结合研究表明,野尻霉素四唑结合在催化位点,并通过直接相互作用促进磷酸的结合。磷酸结合伴随着构象变化,使一个关键的精氨酸(Arg569)进入催化位点。在100 K下使用同步辐射进行的分辨率为1.7埃的X射线晶体学结合实验中,最终确定了磷酸氧原子的位置。对R态糖原磷酸化酶晶体进行的分辨率为2.5埃的X射线晶体学结合研究表明,与野尻霉素四唑和磷酸接触的蛋白质原子和水分子与T态中的相似。在T态和R态中,磷酸根离子都在辅因子磷酸吡哆醛基团的氢键距离内,并与四唑环的N - 1原子形成离子接触。这些结果与先前对庚烯醇和磷酸复合物的时间分辨结构研究一致。结构和动力学结果表明,野尻霉素四唑与磷酸结合后表现出与过渡态类似物一致的性质,并证明了二者如何相互促进结合。

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