Division of Structural and Computational Biology, School of Biological Sciences, Nanyang Technological University, 60 Nanyang Drive, Singapore 637551.
Protein Sci. 2010 Aug;19(8):1577-86. doi: 10.1002/pro.438.
The emergence of drug-resistant malaria parasites is the major threat to effective malaria control, prompting a search for novel compounds with mechanisms of action that are different from the traditionally used drugs. The immunosuppressive drug FK506 shows an antimalarial activity. The mechanism of the drug action involves the molecular interaction with the parasite target proteins PfFKBP35 and PvFKBP35, which are novel FK506 binding protein family (FKBP) members from Plasmodium falciparum and Plasmodium vivax, respectively. Currently, molecular mechanisms of the FKBP family proteins in the parasites still remain elusive. To understand their functions, here we have determined the structures of the FK506 binding domain of Plasmodium vivax (PvFKBD) in unliganded form by NMR spectroscopy and in complex with FK506 by X-ray crystallography. We found out that PvFKBP35 exhibits a canonical FKBD fold and shares kinetic profiles similar to those of PfFKBP35, the homologous protein in P. falciparum, indicating that the parasite FKBP family members play similar biological roles in their life cycles. Despite the similarity, differences were observed in the ligand binding modes between PvFKBD and HsFKBP12, a human FKBP homolog, which could provide insightful information into designing selective antimalarial drug against the parasites.
耐药疟原虫的出现是有效疟疾控制的主要威胁,促使人们寻找作用机制与传统药物不同的新型化合物。免疫抑制药物 FK506 显示出抗疟活性。该药物的作用机制涉及与寄生虫靶蛋白 PfFKBP35 和 PvFKBP35 的分子相互作用,PfFKBP35 和 PvFKBP35 分别是来自疟原虫和间日疟原虫的新型 FK506 结合蛋白家族(FKBP)成员。目前,寄生虫中 FKBP 家族蛋白的分子机制仍不清楚。为了了解它们的功能,我们在这里通过 NMR 光谱法测定了无配体形式的间日疟原虫(PvFKBD)FK506 结合域和与 FK506 复合物的结构通过 X 射线晶体学。我们发现 PvFKBP35 表现出典型的 FKBD 折叠,并具有与 PfFKBP35 相似的动力学特征,PfFKBP35 是疟原虫中的同源蛋白,表明寄生虫 FKBP 家族成员在其生命周期中发挥相似的生物学作用。尽管存在相似性,但在 PvFKBD 与 HsFKBP12(人类 FKBP 同源物)之间的配体结合模式中观察到差异,这可为设计针对寄生虫的选择性抗疟药物提供有见地的信息。