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Induction of substrate specificity shifts by placement of alanine insertions within the consensus amphipathic region of the Escherichia coli GABA (gamma-aminobutyric acid) transporter encoded by gabP.

机译:通过将丙氨酸插入放置在由gabP编码的大肠杆菌GABA(γ-氨基丁酸)转运蛋白的共有两亲性区域内,可以诱导底物特异性转移。

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摘要

The Escherichia coli GABA (gamma-aminobutyric acid) permease GabP is a prototypical APC (amine/polyamine/choline) super-family transporter that has a CAR (consensus amphipathic region) containing multiple specificity determinants, ostensibly organized on two helical surfaces, one hydrophobic [SHS (sensitive hydrophobic surface)] and the other hydrophilic [SPS (sensitive polar surface)]. To gauge the functional effects of placing alanine insertions at close intervals across the entire GabP CAR, 64 insertion variants were constructed. Insertions, particularly those in the SHS and the SPS, were highly detrimental to steady-state [(3)H]GABA accumulation. TSR (transport specificity ratio) analysis, employing [(3)H]nipecotic acid and [(14)C]GABA, showed that certain alanine insertions were associated with a specificity shift (i.e. a change in k (cat)/ K (m)). An insertion (INS Ala-269) located N-terminal to the SHS increased specificity for [(3)H]nipecotic acid relative to [(14)C]GABA, whereas an insertion (INS Ala-321) located C-terminal to the SPS had the opposite effect. Overall, the results are consistent with a working hypothesis that the GabP CAR contains extensive functional surfaces that may be manipulated by insertion mutagenesis to alter the specificity ( k (cat)/ K (m)) phenotype. The thermodynamic basis of TSR analysis provides generality, suggesting that amino acid insertions could affect specificity in many other transporters, particularly those such as the E. coli phenylalanine permease PheP [Pi, Chow and Pittard (2002) J. Bacteriol. 184, 5842-5847] that have a functionally significant CAR-like domain.
机译:大肠杆菌GABA(γ-氨基丁酸)渗透酶GabP是原型APC(胺/多胺/胆碱)超家族转运蛋白,具有包含多个特异性决定簇的CAR(共有两亲性区域),表面上组织在两个螺旋表面上,一个疏水性[SHS(敏感的疏水性表面)]和另一个亲水性[SPS(敏感的极性表面)]。为了评估在整个GabP CAR上紧密间隔放置丙氨酸插入物的功能效果,构建了64个插入变体。插入,特别是那些在SHS和SPS中的插入,对稳态[(3)H] GABA积累非常有害。使用[[3] H]乳酸和[[14] C] GABA的TSR(运输特异性比)分析表明,某些丙氨酸插入与特异性转移有关(即k(cat)/ K(m ))。相对于[(14)C] GABA,位于SHS N末端的插入物(INS Ala-269)相对于[(14)C] GABA增加了对[(3)H]乳酸的特异性,而位于CHS末端C末端的插入物(INS Ala-321) SPS具有相反的效果。总体而言,该结果与一个可行的假设一致,即GabP CAR包含广泛的功能表面,可通过插入诱变来改变特异性(k(cat)/ K(m))表型来对其进行操作。 TSR分析的热力学基础提供了普遍性,表明氨基酸插入可影响许多其他转运蛋白的特异性,尤其是那些诸如大肠杆菌苯丙氨酸通透酶PheP [Pi,Chow和Pittard(2002)J.Bacteriol。 184,5842-5847]具有功能上显着的类CAR结构域。

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