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鉴定对大肠杆菌磷酸果糖激酶变构调节至关重要的底物接触残基。

Identification of substrate contact residues important for the allosteric regulation of phosphofructokinase from Eschericia coli.

作者信息

Fenton Aron W, Paricharttanakul N Monique, Reinhart Gregory D

机构信息

Department of Biochemistry and Biophysics and Center for Advanced Biomolecular Research, Texas A&M University, 2128 TAMU, College Station, Texas 77843-2128, USA.

出版信息

Biochemistry. 2003 Jun 3;42(21):6453-9. doi: 10.1021/bi034273t.

Abstract

The side chains of Escherichia coli phosphofructokinase (EcPFK) that interact with bound substrate, fructose 6-phosphate (Fru-6-P), are examined for their potential roles in allosteric regulation. Mutations that severely decrease Fru-6-P affinity and/or k(cat)/K(m) were created at each contact residue, with the exception of the catalytic base, D127. Even though Fru-6-P affinity was greatly decreased for R162E, M169A, E222A/H223A, and R243E, the mutated proteins retained the ability to be activated by MgADP and inhibited by phosphoenolpyruvate (PEP). R252E did not show an allosteric response to either MgADP or PEP. The H249E mutation retained MgADP activation but did not respond to PEP. R72E, T125A, and R171E maintained allosteric inhibition by PEP. Both R72E and T125A displayed a MgADP-dependent decrease in k(cat) but no MgADP-dependent K-type effects. R171E maintained MgADP-dependent K-type activation but also displayed a MgADP-dependent decrease in k(cat). Localization of mutations that alter MgADP activation near the transferred phosphate group indicates the importance of the 1-methoxy region of Fru-6-P in allosteric regulation by MgADP. A region near the 6'-phosphate may be similarly important for PEP inhibition. R252 is uniquely positioned between the 1'- and 6'-phosphates of bound Fru-1,6-BP, and the mutation at this position may alter both allosterically responsive regions. The differential functions of specific regions in the Fru-6-P contact residues support different mechanisms for allosteric activation and inhibition. In addition, the lack of correlation between mutations that decrease Fru-6-P affinity and those that abolish allosteric communications supports the independence of affinity and allosteric coupling.

摘要

研究了大肠杆菌磷酸果糖激酶(EcPFK)与结合底物6-磷酸果糖(Fru-6-P)相互作用的侧链在变构调节中的潜在作用。除催化碱基D127外,在每个接触残基处都产生了严重降低Fru-6-P亲和力和/或k(cat)/K(m)的突变。尽管R162E、M169A、E222A/H223A和R243E的Fru-6-P亲和力大大降低,但突变蛋白仍保留了被MgADP激活和被磷酸烯醇丙酮酸(PEP)抑制的能力。R252E对MgADP或PEP均未表现出变构反应。H249E突变保留了MgADP激活,但对PEP无反应。R72E、T125A和R171E维持了PEP的变构抑制作用。R72E和T125A均表现出MgADP依赖性的k(cat)降低,但无MgADP依赖性的K型效应。R171E维持了MgADP依赖性的K型激活,但也表现出MgADP依赖性的k(cat)降低。在转移的磷酸基团附近改变MgADP激活的突变定位表明,Fru-6-P的1-甲氧基区域在MgADP变构调节中很重要。6'-磷酸附近的区域对PEP抑制可能同样重要。R252独特地位于结合的Fru-1,6-BP的1'-和6'-磷酸之间,该位置的突变可能会改变两个变构响应区域。Fru-6-P接触残基中特定区域的不同功能支持变构激活和抑制的不同机制。此外,降低Fru-6-P亲和力的突变与消除变构通讯的突变之间缺乏相关性,支持了亲和力和变构偶联的独立性。

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