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糖原磷酸化酶b的变构相互作用。6-磷酸葡萄糖和无机磷酸与双亚氨酸交联的磷酸化酶b结合的晶体学研究。

Allosteric interactions of glycogen phosphorylase b. A crystallographic study of glucose 6-phosphate and inorganic phosphate binding to di-imidate-cross-linked phosphorylase b.

作者信息

Lorek A, Wilson K S, Sansom M S, Stuart D I, Stura E A, Jenkins J A, Zanotti G, Hajdu J, Johnson L N

出版信息

Biochem J. 1984 Feb 15;218(1):45-60. doi: 10.1042/bj2180045.

Abstract

The binding to glycogen phosphorylase b of glucose 6-phosphate and inorganic phosphate (respectively allosteric inhibitor and substrate/activator of the enzyme) were studied in the crystal at 0.3 nm (3A) resolution. Glucose 6-phosphate binds in the alpha-configuration at a site that is close to the AMP allosteric effector site at the subunit-subunit interface and promotes several conformational changes. The phosphate-binding site of the enzyme for glucose 6-phosphate involves contacts to two cationic residues, Arg-309 and Lys-247. This site is also occupied in the inorganic-phosphate-binding studies and is therefore identified as a high-affinity phosphate-binding site. It is distinct from the weaker phosphate-binding site of the enzyme for AMP, which is 0.27 nm (2.7A) away. The glucose moiety of glucose 6-phosphate and the adenosine moiety of AMP do not overlap. The results provide a structural explanation for the kinetic observations that glucose 6-phosphate inhibition of AMP activation of phosphorylase b is partially competitive and highly co-operative. The results suggest that the transmission of allosteric conformational changes involves an increase in affinity at phosphate-binding sites and relative movements of alpha-helices. In order to study glucose 6-phosphate and phosphate binding it was necessary to cross-link the crystals. The use of dimethyl malondi-imidate as a new cross-linking reagent in protein crystallography is discussed.

摘要

在0.3纳米(3埃)分辨率的晶体中研究了6-磷酸葡萄糖和无机磷酸(分别为该酶的变构抑制剂和底物/激活剂)与糖原磷酸化酶b的结合情况。6-磷酸葡萄糖以α构型结合在一个靠近亚基-亚基界面处AMP变构效应位点的位置,并引发了几种构象变化。该酶结合6-磷酸葡萄糖的磷酸结合位点涉及与两个阳离子残基Arg-309和Lys-247的接触。在无机磷酸结合研究中该位点也被占据,因此被确定为一个高亲和力的磷酸结合位点。它与该酶结合AMP的较弱磷酸结合位点不同,后者相距0.27纳米(2.7埃)。6-磷酸葡萄糖的葡萄糖部分和AMP的腺苷部分不重叠。这些结果为动力学观察提供了结构解释,即6-磷酸葡萄糖对磷酸化酶b的AMP激活的抑制是部分竞争性且高度协同的。结果表明变构构象变化的传递涉及磷酸结合位点亲和力的增加以及α螺旋的相对移动。为了研究6-磷酸葡萄糖和磷酸的结合,有必要对晶体进行交联。讨论了在蛋白质晶体学中使用丙二亚氨酸二甲酯作为一种新的交联试剂的情况。

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