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AMP inhibition of pig kidney fructose-1,6-bisphosphatase

机译:AMP抑制猪肾果糖-1,6-双磷酸酶

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摘要

Lys-112 and Tyr-113 in pig kidney fructose-1, 6-bisphosphatase (FBPase) make direct interactions with AMP in the allosteric binding site. Both residues interact with the phosphate moiety of AMP while Tyr-113 also interacts with the 3'-hydroxyl of the ribose ring. The role of these two residues in AMP binding and allosteric inhibition was investigated. Site-specific mutagenesis was used to convert Lys-112 to glutamine (K112Q) and Tyr-113 to phenylalanine (Y113F). These amino acid substitutions result in small alterations in k_(cat) and increases in K_m. However, both the K112Q and Y113F enzymes show alterations in Mg~(2+) affinity and dramatic reductions in AMP affinity. For both mutant enzymes, the AMP concentration required to reduced the enzyme activity by one-half. [AMP]_(0.5), was increased more than a 1000-fold as compared to the wild-type enzyme. The K112Q enzyme also showed a 10-fold reduction in affinity for Mg~(2+). Although the allosteric site is approximately 28 A from the metal binding sites, which comprise part of the active site, these site-specific mutations in the AMP site influence metal binding and suggest a direct connection between the allosteric and the active sites.
机译:猪肾脏果糖-1、6-双磷酸酶(FBPase)中的Lys-112和Tyr-113在变构结合位点与AMP直接相互作用。两个残基都与AMP的磷酸部分相互作用,而Tyr-113也与核糖环的3'-羟基相互作用。研究了这两个残基在AMP结合和变构抑制中的作用。使用位点特异性诱变将Lys-112转化为谷氨酰胺(K112Q),将Tyr-113转化为苯丙氨酸(Y113F)。这些氨基酸取代导致k_(cat)的微小变化,而K_m增加。然而,K112Q和Y113F酶都显示Mg〜(2+)亲和力的改变和AMP亲和力的显着降低。对于两种突变酶,AMP浓度都需要将酶活性降低一半。与野生型酶相比,[AMP] _(0.5)增加了1000倍以上。 K112Q酶对Mg〜(2+)的亲和力也降低了10倍。尽管变构位点距离金属结合位点约28 A,而金属结合位点构成了活性位点的一部分,但AMP位点中的这些位点特异性突变会影响金属结合,并暗示了变构位点与活性位点之间的直接联系。

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