Silva Carlos H T P, Silva Mario, Iulek Jorge, Thiemann Otavio H
Departamento de Física e Informática, Grupo de Cristalografia de Proteínas e Biologia Estrutural, Instituto de Física de São Carlos, USP, Caixa Postal 369, 13560-590, São Carlos-SP, Brazil.
J Biomol Struct Dyn. 2008 Jun;25(6):589-97. doi: 10.1080/07391102.2008.10507205.
Adenine phosphoribosyltransferase (APRT) is an important enzyme component of the purine recycling pathway. Parasitic protozoa of the order Kinetoplastida are unable to synthesize purines de novo and use the salvage pathway for the synthesis of purine bases rendering this biosynthetic pathway an attractive target for antiparasitic drug design. The recombinant human adenine phosphoribosyltransferase (hAPRT) structure was resolved in the presence of AMP in the active site to 1.76 A resolution and with the substrates PRPP and adenine simultaneously bound to the catalytic site to 1.83 A resolution. An additional structure was solved containing one subunit of the dimer in the apo-form to 2.10 A resolution. Comparisons of these three hAPRT structures with other 'type I' PRTases revealed several important features of this class of enzymes. Our data indicate that the flexible loop structure adopts an open conformation before and after binding of both substrates adenine and PRPP. Comparative analyses presented here provide structural evidence to propose the role of Glu104 as the residue that abstracts the proton of adenine N9 atom before its nucleophilic attack on the PRPP anomeric carbon. This work leads to new insights to the understanding of the APRT catalytic mechanism.
腺嘌呤磷酸核糖转移酶(APRT)是嘌呤再循环途径的一个重要酶组分。动质体目寄生原生动物无法从头合成嘌呤,而是利用补救途径合成嘌呤碱基,这使得该生物合成途径成为抗寄生虫药物设计的一个有吸引力的靶点。重组人腺嘌呤磷酸核糖转移酶(hAPRT)在活性位点存在AMP的情况下解析出分辨率为1.76 Å的结构,且底物5-磷酸核糖-1-焦磷酸(PRPP)和腺嘌呤同时结合到催化位点时解析出分辨率为1.83 Å的结构。还解析出了一个分辨率为2.10 Å的无配体形式二聚体的一个亚基的结构。将这三种hAPRT结构与其他“ I型”磷酸核糖转移酶进行比较,揭示了这类酶的几个重要特征。我们的数据表明,在腺嘌呤和PRPP这两种底物结合之前和之后,柔性环结构都采取开放构象。此处进行的比较分析提供了结构证据,表明Glu104作为在腺嘌呤N9原子对PRPP异头碳进行亲核攻击之前夺取其质子的残基所起的作用。这项工作为理解APRT催化机制带来了新的见解。