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首页> 外文期刊>The Journal of biological chemistry >Central Cavity of Fructose-1,6-bisphosphatase and the Evolution of AMP/Fructose 2,6-bisphosphate Synergism in Eukaryotic Organisms
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Central Cavity of Fructose-1,6-bisphosphatase and the Evolution of AMP/Fructose 2,6-bisphosphate Synergism in Eukaryotic Organisms

机译:果糖-1,6-双磷酸酶的中心腔和amp /果糖的演变在真核生物中的AMP / Fructose 2,6-双磷酸盐协同作用

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The effects of AMP and fructose 2,6-bisphosphate (Fru-2,6-P2) on porcine fructose-1,6-bisphosphatase (pFBPase) and Escherichia coli FBPase (eFBPase) differ in three respects. AMP/Fru-2,6-P2 synergism in pFBPase is absent in eFBPase. Fru-2,6-P2 induces a 13° subunit pair rotation in pFBPase but no rotation in eFBPase. Hydrophilic side chains in eFBPase occupy what otherwise would be a central aqueous cavity observed in pFBPase. Explored here is the linkage of AMP/Fru-2,6-P2 synergism to the central cavity and the evolution of synergism in FBPases. The single mutation Ser45 → His substantially fills the central cavity of pFBPase, and the triple mutation Ser45 → His, Thr46 → Arg, and Leu186 → Tyr replaces porcine with E. coli type side chains. Both single and triple mutations significantly reduce synergism while retaining other wild-type kinetic properties. Similar to the effect of Fru-2,6-P2 on eFBPase, the triple mutant of pFBPase with bound Fru-2,6-P2 exhibits only a 2° subunit pair rotation as opposed to the 13° rotation exhibited by the Fru-2,6-P2 complex of wild-type pFBPase. The side chain at position 45 is small in all available eukaryotic FBPases but large and hydrophilic in bacterial FBPases, similar to eFBPase. Sequence information indicates the likelihood of synergism in the FBPase from Leptospira interrogans (lFBPase), and indeed recombinant lFBPase exhibits AMP/Fru-2,6-P2 synergism. Unexpectedly, however, AMP also enhances Fru-6-P binding to lFBPase. Taken together, these observations suggest the evolution of AMP/Fru-2,6-P2 synergism in eukaryotic FBPases from an ancestral FBPase having a central aqueous cavity and exhibiting synergistic feedback inhibition by AMP and Fru-6-P.
机译:AMP和果糖2,6-双磷酸(FRU-2,6-P2)对猪果糖-1,6-双磷酸酶(PFBPase)和大肠杆菌FBP酶(EFBPase)的影响在三个方面不同。在EFBPase中不存在PFBPase中的AMP / FRU-2,6-P2协同作用。 FRU-2,6-P2在PFBPase中引起13°亚基对旋转,但在EFBPase中没有旋转。 EFBPase中的亲水侧链占据了在PFBPase中观察到的中央含水腔。这里探索的是AMP / FRU-2,6-P2协同作用对中央腔的联系以及FBP酶中协同作用的演变。单一突变Ser45→他基本上填充了PFBPase的中心腔,并且三重突变Ser45→His,Thr46→Arg和Leu186→Tyr用大肠杆菌型侧链取代猪。单一和三均突变均显着降低协同作用,同时保留其他野生型动力学性质。类似于FRU-2,6-P2对EFBPase的影响,具有结合FRU-2,6-P2的PFBP酶的三突变体仅表现出2°亚基对旋转,而不是通过FRU-2呈现的13°旋转,野生型PFBPase的6-P2复合物。位置45的侧链在所有可用的真核fbpase中小,但细菌FBP酶的大而亲水,类似于EFBPase。序列信息表明来自百分之核蛋解虫(LFBPase)的FBPase中协同作用的可能性,并且实际上重组LFBPase表现出AMP / FRU-2,6-P2协同作用。然而,意外地,AMP还增强了FRU-6-P与LFBPase结合。这些观察结果表明,来自具有中央含水腔的祖先FBPase的AMP / FRU-2,6-P2协同作用的演变,并通过AMP和FRU-6-P表现出协同反馈抑制。

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