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活性T态猪肾果糖1,6 - 二磷酸酶的证据:界面残基赖氨酸-42对变构抑制和AMP协同作用很重要。

Evidence for an active T-state pig kidney fructose 1,6-bisphosphatase: interface residue Lys-42 is important for allosteric inhibition and AMP cooperativity.

作者信息

Lu G, Stec B, Giroux E L, Kantrowitz E R

机构信息

Department of Chemistry, Merkert Chemistry Center, Boston College, Chestnut Hill, Massachusetts 02167, USA.

出版信息

Protein Sci. 1996 Nov;5(11):2333-42. doi: 10.1002/pro.5560051120.

Abstract

During the R-->T transition in the tetrameric pig kidney fructose-1,6-bisphosphatase (Fru-1,6-P2ase, EC 3.1.3.11) a major change in the quaternary structure of the enzyme occurs that is induced by the binding of the allosteric inhibitor AMP (Ke HM, Liang JY, Zhang Y, Lipscomb WN, 1991, Biochemistry 30:4412-4420). The change in quaternary structure involving the rotation of the upper dimer by 17 degrees relative to the lower dimer is coupled to a series of structural changes on the secondary and tertiary levels. The structural data indicate that Lys-42 is involved in a complex set of intersubunit interactions across the dimer-dimer interface with residues of the 190's loop, a loop located at the pivot of the allosteric rotation. In order to test the function of Lys-42, we have replaced it with alanine using site-specific mutagenesis. The kcat and K(m) values for Lys-42-->Ala Fru-1,6-P2ase were 11 s-1 and 3.3 microM, respectively, resulting in a mutant enzyme that was slightly less efficient catalytically than the normal pig kidney enzyme. Although the Lys-42-->Ala Fru-1,6-P2ase was similar kinetically in terms of K(m) and kcat, the response to inhibition by AMP was significantly different than that of the normal pig kidney enzyme. Not only was AMP inhibition no longer cooperative, but also it occurred in two stages, corresponding to high- and low-affinity binding sites. Saturation of the high-affinity sites only reduced the activity by 30%, compared to 100% for the wild-type enzyme. In order to determine in what structural state the enzyme was after saturation of the high-affinity sites, the Lys-42-->Ala enzyme was crystallized in the presence of Mn2+, fructose-6-phosphate (Fru-6-P), and 100 microM AMP and the data collected to 2.3 A resolution. The X-ray structure showed the T state with AMP binding with full occupancy to the four regulatory sites and the inhibitor Fru-6-P bound at the active sites. The results reported here suggest that, in the normal pig kidney enzyme, the interactions between Lys-42 and residues of the 190's loop, are important for propagation of AMP cooperativity to the adjacent subunit across the dimer-dimer interface as opposed to the monomer-monomer interface, and suggest that AMP cooperativity is necessary for full allosteric inhibition by AMP.

摘要

在四聚体猪肾果糖-1,6-二磷酸酶(Fru-1,6-P2ase,EC 3.1.3.11)从R态向T态转变的过程中,酶的四级结构发生了重大变化,这是由变构抑制剂AMP的结合所诱导的(Ke HM,Liang JY,Zhang Y,Lipscomb WN,1991,《生物化学》30:4412 - 4420)。涉及上二聚体相对于下二聚体旋转17度的四级结构变化与二级和三级水平上的一系列结构变化相关联。结构数据表明,赖氨酸-42参与了跨二聚体-二聚体界面与190环残基的复杂亚基间相互作用,190环位于变构旋转的枢轴处。为了测试赖氨酸-42的功能,我们使用定点诱变将其替换为丙氨酸。赖氨酸-42→丙氨酸Fru-1,6-P2ase的kcat和K(m)值分别为11 s-1和3.3 microM,产生了一种催化效率略低于正常猪肾酶的突变酶。尽管赖氨酸-42→丙氨酸Fru-1,6-P2ase在K(m)和kcat方面在动力学上相似,但对AMP抑制的反应与正常猪肾酶显著不同。不仅AMP抑制不再具有协同性,而且它分两个阶段发生,对应于高亲和力和低亲和力结合位点。高亲和力位点饱和时,活性仅降低30%,而野生型酶为100%。为了确定高亲和力位点饱和后酶处于何种结构状态,将赖氨酸-42→丙氨酸酶在Mn2+、果糖-6-磷酸(Fru-6-P)和100 microM AMP存在下结晶,并收集到2.3 Å分辨率的数据。X射线结构显示为T态,AMP完全占据四个调节位点,抑制剂Fru-6-P结合在活性位点。此处报道的结果表明,在正常猪肾酶中,赖氨酸-42与190环残基之间的相互作用对于AMP协同性通过二聚体-二聚体界面而非单体-单体界面传递到相邻亚基很重要,并表明AMP协同性是AMP完全变构抑制所必需的。

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本文引用的文献

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