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Kinetic and structural characterization of a product complex of 6-hydroxymethyl-7,8-dihydropterin pyrophosphokinase from Escherichia coli.

机译:大肠杆菌6-羟甲基-7,8-二氢蝶呤焦磷酸激酶的产物复合物的动力学和结构表征。

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摘要

HPPK (6-hydroxymethyl-7,8-dihydropterin pyrophosphokinase) catalyses the transfer of pyrophosphate from ATP to HMDP (6-hydroxymethyl-7,8-dihydropterin), to form AMP and DHPPP (6-hydroxymethyl-7,8-dihydropterin pyrophosphate). This transformation is a key step in the biosynthesis of folic acid, and HPPK is consequently a target for antimicrobial drugs. The substrates are known to bind to HPPK in an ordered manner, with ATP binding first followed by HMDP. In the present study we show by isothermal titration calorimetry that the product, DHPPP, can bind to the HPPK apoenzyme with high affinity (equilibrium dissociation constant, K(d)=0.2 microM), but without the enhancement of pterin fluorescence that occurs on binding of HMDP. The transient kinetics of the enzyme can be monitored by measuring the change in the fluorescence of the pterin ring using stopped-flow methods. The fluorescence exhibits a pronounced biphasic behaviour: it initially rises and then declines back to its original level. This behaviour is in agreement with a two-state kinetic model, with the first phase of fluorescence increase associated with HMDP binding to the enzyme, and the second phase with a slow event that occurs after the reaction has taken place. The HPPK-DHPPP and HPPK-DHPPP-AMP complexes were examined by NMR, and the binding site for DHPPP partially mapped from changes in chemical shifts identified from two dimensional 1H/15N heteronuclear single-quantum coherence spectra. The results demonstrate that DHPPP, in contrast to HMDP, is able to bind to the HPPK apoenzyme and suggest that the pyrophosphate moieties on the ligand play an important role in establishment of a high affinity binding site for the pterin ring.
机译:HPPK(6-羟甲基-7,8-二氢蝶呤焦磷酸激酶)催化焦磷酸从ATP转移至HMDP(6-羟甲基-7,8-二氢蝶呤)形成AMP和DHPPP(6-羟甲基-7,8-dihydropterin焦磷酸激酶) )。这种转化是叶酸生物合成中的关键步骤,因此HPPK是抗菌药物的目标。已知底物以有序方式结合HPPK,首先结合ATP,然后结合HMDP。在本研究中,我们通过等温滴定量热法显示,产品DHPPP可以高亲和力(平衡解离常数,K(d)= 0.2 microM)与HPPK脱辅酶结合,但结合时不会产生蝶呤荧光HMDP。酶的瞬时动力学可以通过使用停止流方法测量蝶呤环的荧光变化来监测。荧光表现出明显的双相行为:首先上升,然后下降到原始水平。该行为与两态动力学模型一致,第一阶段的荧光增加与HMDP与酶的结合有关,第二阶段的反应缓慢,发生在反应发生之后。通过NMR检查HPPK-DHPPP和HPPK-DHPPP-AMP复合物,并且从二维1H / 15N异核单量子相干光谱鉴定的化学位移的变化中部分映射了DHPPP的结合位点。结果表明,与HMDP相比,DHPPP能够与HPPK辅酶结合,并表明配体上的焦磷酸部分在建立蝶呤环的高亲和力结合位点中起着重要作用。

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