Purine-binding proteins are of critical importance to all living organisms. Approximately 13% of the human genome is devoted to coding for purine-binding proteins. Given their importance, purine-binding proteins are attractive targets for chemotherapeutic intervention against a variety of disease states, particularly cancer. Modern computational and biophysical techniques, combined together in a structure-based drug design approach, aid immensely in the discovery of inhibitors of these targets. This review covers the process of modern structure-based drug design and gives examples of its use in discovery and development of drugs that target purine-binding proteins. The targets reviewed are human purine nucleoside phosphorylase, human epidermal growth factor receptor kinase, and human kinesin spindle protein.

译文

:嘌呤结合蛋白对所有生物至关重要。人类基因组中约有13%专门用于编码嘌呤结合蛋白。鉴于其重要性,嘌呤结合蛋白是针对多种疾病尤其是癌症的化学疗法干预的有吸引力的靶标。现代的计算和生物物理技术,结合以基于结构的药物设计方法,极大地帮助发现了这些靶标的抑制剂。这篇综述涵盖了基于现代结构的药物设计过程,并举例说明了其在发现和开发针对嘌呤结合蛋白的药物中的应用。审查的目标是人嘌呤核苷磷酸化酶,人表皮生长因子受体激酶和人驱动蛋白纺锤体蛋白。

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