首页> 外文期刊>Journal of Medicinal Chemistry >Bisubstrate analogue inhibitors of 6-hydroxymethyl-7,8-dihydropterin pyrophosphokinase: synthesis and biochemical and crystallographic studies.
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Bisubstrate analogue inhibitors of 6-hydroxymethyl-7,8-dihydropterin pyrophosphokinase: synthesis and biochemical and crystallographic studies.

机译:6-羟甲基-7,8-二氢蝶呤焦磷酸激酶的双底物类似物抑制剂:合成以及生化和晶体学研究。

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摘要

6-Hydroxymethyl-7,8-dihydropterin pyrophosphokinase (HPPK) catalyzes the transfer of pyrophosphate from ATP to 6-hydroxymethyl-7,8-dihydropterin (HP), leading to the biosynthesis of folate cofactors. Like other enzymes in the folate pathway, HPPK is an ideal target for the development of antimicrobial agents because the enzyme is essential for microorganisms but is absent from human and animals. Three bisubstrate analogues have been synthesized for HPPK and characterized by biochemical and X-ray crystallographic analyses. All three bisubstrate analogues consist of a pterin, an adenosine moiety, and a link composed of 2-4 phosphoryl groups. P(1)-(6-Hydroxymethylpterin)-P(2)-(5'-adenosyl)diphosphate (HP(2)A, 5) shows little affinity and inhibitory activity for E. coli HPPK. P(1)-(6-Hydroxymethylpterin)-P(3)-(5'-adenosyl)triphosphate (HP(3)A, 6) shows moderate affinity and inhibitory activity with K(d) = 4.25 microM in the presence of Mg(2+) and IC(50) = 1.27 microM. P(1)-(6-Hydroxymethylpterin)-P(4)-(5'-adenosyl)tetraphosphate (HP(4)A, 7) shows the highest affinity and inhibitory activity with K(d) = 0.47 microM in the presence of Mg(2+) and IC(50) = 0.44 microM. The affinity of MgHP(4)A for HPPK is approximately 116 and 76 times higher than that of MgADP and 6-hydroxymethylpterin, respectively. The crystal structure of HPPK in complex with 7 (HPPK.MgHP(4)A) has been determined at 1.85 A resolution with a crystallographic R factor of 0.185. The crystal structure shows that 7 occupies both HP- and ATP-binding sites and induces significant conformational changes in HPPK. The biochemical and structural studies of the bisubstrate analogues indicate that the bisubstrate analogue approach can produce more potent inhibitors for HPPK and the minimum length of the link for a bisubstrate analogue is approximately 7 A.
机译:6-羟甲基-7,8-二氢蝶呤焦磷酸激酶(HPPK)催化焦磷酸从ATP转移至6-羟甲基-7,8-二氢蝶呤(HP),从而导致叶酸辅因子的生物合成。像叶酸途径中的其他酶一样,HPPK是开发抗微生物剂的理想靶标,因为该酶对微生物必不可少,而人和动物却不存在。已经为HPPK合成了三种双底物类似物,并通过生化和X射线晶体学分析对其进行了表征。所有三个双底物类似物均由蝶呤,腺苷部分和由2-4个磷酰基组成的链组成。 P(1)-(6-羟甲基蝶呤)-P(2)-(5'-腺苷)二磷酸酯(HP(2)A,5)对大肠杆菌HPPK的亲和力和抑制活性很小。 P(1)-(6-羟甲基蝶呤)-P(3)-(5'-腺苷)三磷酸酯(HP(3)A,6)在K(d)= 4.25 microM的情况下显示适度的亲和力和抑制活性Mg(2+)和IC(50)= 1.27 microM。 P(1)-(6-羟甲基蝶呤)-P(4)-(5'-腺苷)四磷酸(HP(4)A,7)在存在K(d)= 0.47 microM时显示出最高的亲和力和抑制活性Mg(2+)和IC(50)的摩尔数= 0.44 microM。 MgHP(4)A对HPPK的亲和力分别比MgADP和6-羟甲基蝶呤的亲和力高约116倍和76倍。 HPPK与7(HPPK.MgHP(4)A)形成复合物的晶体结构的分辨度为1.85 A,晶体学R值为0.185。晶体结构显示7同时占据HP和ATP结合位点,并诱导HPPK发生显着的构象变化。双底物类似物的生化和结构研究表明,双底物类似物方法可产生更有效的HPPK抑制剂,双底物类似物的最小连接长度约为7A。

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