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磷酸结合(β/α)8桶状结构中底物特异性的结构基础:来自大肠杆菌K-12的D-阿洛酮糖6-磷酸3-差向异构酶

Structural basis for substrate specificity in phosphate binding (beta/alpha)8-barrels: D-allulose 6-phosphate 3-epimerase from Escherichia coli K-12.

作者信息

Chan Kui K, Fedorov Alexander A, Fedorov Elena V, Almo Steven C, Gerlt John A

机构信息

Departments of Biochemistry and Chemistry, University of Illinois at Urbana-Champaign, 600 South Mathews Avenue, Urbana, Illinois 61801, USA.

出版信息

Biochemistry. 2008 Sep 9;47(36):9608-17. doi: 10.1021/bi800821v. Epub 2008 Aug 14.

Abstract

Enzymes that share the (beta/alpha) 8-barrel fold catalyze a diverse range of reactions. Many utilize phosphorylated substrates and share a conserved C-terminal (beta/alpha) 2-quarter barrel subdomain that provides a binding motif for the dianionic phosphate group. We recently reported functional and structural studies of d-ribulose 5-phosphate 3-epimerase (RPE) from Streptococcus pyogenes that catalyzes the equilibration of the pentulose 5-phosphates d-ribulose 5-phosphate and d-xylulose 5-phosphate in the pentose phosphate pathway [J. Akana, A. A. Fedorov, E. Fedorov, W. R. P. Novack, P. C. Babbitt, S. C. Almo, and J. A. Gerlt (2006) Biochemistry 45, 2493-2503]. We now report functional and structural studies of d-allulose 6-phosphate 3-epimerase (ALSE) from Escherichia coli K-12 that catalyzes the equilibration of the hexulose 6-phosphates d-allulose 6-phosphate and d-fructose 6-phosphate in a catabolic pathway for d-allose. ALSE and RPE prefer their physiological substrates but are promiscuous for each other's substrate. The active sites (RPE complexed with d-xylitol 5-phosphate and ALSE complexed with d-glucitol 6-phosphate) are superimposable (as expected from their 39% sequence identity), with the exception of the phosphate binding motif. The loop following the eighth beta-strand in ALSE is one residue longer than the homologous loop in RPE, so the binding site for the hexulose 6-phosphate substrate/product in ALSE is elongated relative to that for the pentulose 5-phosphate substrate/product in RPE. We constructed three single-residue deletion mutants of the loop in ALSE, DeltaT196, DeltaS197 and DeltaG198, to investigate the structural bases for the differing substrate specificities; for each, the promiscuity is altered so that d-ribulose 5-phosphate is the preferred substrate. The changes in k cat/ K m are dominated by changes in k cat, suggesting that substrate discrimination results from differential transition state stabilization. In both ALSE and RPE, the phosphate group hydrogen bonds not only with the conserved motif but also with an active site loop following the sixth beta-strand, providing a potential structural mechanism for coupling substrate binding with catalysis.

摘要

具有(β/α)8桶状折叠结构的酶催化多种反应。许多这类酶利用磷酸化底物,并共享一个保守的C端(β/α)2 - 四分之一桶状亚结构域,该亚结构域为二阴离子磷酸基团提供了一个结合基序。我们最近报道了化脓性链球菌的D - 核糖 - 5 - 磷酸3 - 差向异构酶(RPE)的功能和结构研究,该酶在磷酸戊糖途径中催化戊糖5 - 磷酸D - 核糖 - 5 - 磷酸和D - 木酮糖 - 5 - 磷酸之间的平衡[J. 赤名、A. A. 费多罗夫、E. 费多罗夫、W. R. P. 诺瓦克、P. C. 巴比特、S. C. 阿尔莫和J. A. 格尔特(2006年)《生物化学》45卷,2493 - 2503页]。我们现在报道大肠杆菌K - 12的D - 阿洛酮糖 - 6 - 磷酸3 - 差向异构酶(ALSE)的功能和结构研究,该酶在D - 阿洛糖的分解代谢途径中催化己糖6 - 磷酸D - 阿洛酮糖 - 6 - 磷酸和D - 果糖 - 6 - 磷酸之间的平衡。ALSE和RPE都更倾向于各自的生理底物,但对彼此的底物也具有通用性。活性位点(RPE与D - 木糖醇 - 5 - 磷酸结合,ALSE与D - 葡糖醇 - 6 - 磷酸结合)是可叠加的(鉴于它们39% 的序列同一性,这是预期的),除了磷酸结合基序。ALSE中第八个β链之后的环比RPE中的同源环长一个残基,因此ALSE中己糖6 - 磷酸底物/产物的结合位点相对于RPE中戊糖5 - 磷酸底物/产物所占的位点有所延长。我们构建了ALSE中该环的三个单残基缺失突变体,即ΔT196、ΔS197和ΔG198,以研究不同底物特异性的结构基础;对于每个突变体,通用性都发生了改变,使得D - 核糖 - 5 - 磷酸成为首选底物。kcat / Km的变化主要由kcat的变化主导,这表明底物识别源于不同的过渡态稳定性。在ALSE和RPE中,磷酸基团不仅与保守基序形成氢键,还与第六个β链之后的一个活性位点环形成氢键,这为将底物结合与催化偶联提供了一种潜在的结构机制。

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