Eakin A E, Guerra A, Focia P J, Torres-Martinez J, Craig S P
Division of Medicinal Chemistry, School of Pharmacy, University of North Carolina at Chapel Hill, 27599-7360, USA.
Antimicrob Agents Chemother. 1997 Aug;41(8):1686-92. doi: 10.1128/AAC.41.8.1686.
The hypoxanthine phosphoribosyltransferase (HPRT) from Trypanosoma cruzi is a potential target for enzyme structure-based inhibitor design, based on previous studies which indicate that these parasites lack the metabolic enzymes required for de novo synthesis of purine nucleotides. By using a bacterial complement selection system, 59 purine analogs were assayed for their interaction with the HPRTs from T. cruzi and Homo sapiens. Eight compounds were identified from the bacterial assay to have an affinity for the trypanosomal enzyme. Inhibition constants for four of these compounds against purified recombinant trypanosomal and human HPRTs were determined and compared. The results confirm that the recombinant system can be used to identify compounds which have affinity for the trypanosomal HPRT. Furthermore, the results provide evidence for the importance of chemical modifications at positions 6 and 8 of the purine ring in the binding of these compounds to the HPRTs. An accurate three-dimensional structure of the trypanosomal enzyme will greatly enhance our understanding of the interactions between HPRTs and these compounds. Toward this end, crystallization conditions for the trypanosomal HPRT and preliminary analysis of X-ray diffraction data to a resolution of 2 A is reported. These results represent significant progress toward a structure-based approach to the design of inhibitors of the HPRT of trypanosomes with the long-range goal of developing new drugs for the treatment of Chagas' disease.
基于先前的研究表明这些寄生虫缺乏嘌呤核苷酸从头合成所需的代谢酶,克氏锥虫的次黄嘌呤磷酸核糖转移酶(HPRT)是基于酶结构的抑制剂设计的潜在靶点。通过使用细菌互补选择系统,对59种嘌呤类似物与克氏锥虫和人类的HPRT的相互作用进行了测定。从细菌试验中鉴定出8种化合物对锥虫酶具有亲和力。测定并比较了其中4种化合物对纯化的重组锥虫和人类HPRT的抑制常数。结果证实该重组系统可用于鉴定对锥虫HPRT具有亲和力的化合物。此外,结果提供了证据,证明嘌呤环6位和8位的化学修饰在这些化合物与HPRT结合中的重要性。锥虫酶精确的三维结构将极大地增进我们对HPRT与这些化合物之间相互作用的理解。为此,报道了锥虫HPRT的结晶条件以及对分辨率为2埃的X射线衍射数据的初步分析。这些结果代表了在基于结构的方法设计锥虫HPRT抑制剂方面取得的重大进展,其长期目标是开发治疗恰加斯病的新药。