Structural characterization of the ACDC domain from ApiAP2 proteins, a potential molecular target against apicomplexan parasites.

Marine Le Berre,Thibault Tubiana,Philippa Reuterswärd Waldner,Noureddine Lazar,Ines Li de la Sierra-Gallay,Joana M Santos,Manuel Llinás,Sylvie Nessler
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Abstract

The apicomplexan AP2 (ApiAP2) proteins are the best characterized family of DNA-binding proteins in Plasmodium spp. malaria parasites. Apart from the AP2 DNA-binding domain, there is little sequence similarity between ApiAP2 proteins. However, a conserved AP2-coincident domain mostly at the C-terminus (ACDC domain) is observed in a subset of the ApiAP2 proteins. The structure and function of this domain remain unknown. We report two crystal structures of ACDC domains derived from distinct Plasmodium ApiAP2 proteins, revealing a conserved, unique, noncanonical, four-helix bundle architecture. We used these structures to perform in silico docking calculations against a library of known antimalarial compounds and identified potential small-molecule ligands that bind in a highly conserved hydrophobic pocket that is present in all apicomplexan ACDC domains. These ligands provide a new molecular basis for the future design of ACDC inhibitors.
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ApiAP2蛋白ACDC结构域的结构表征——一种潜在的抗顶复合体寄生虫分子靶点。
顶复合体AP2 (ApiAP2)蛋白是疟原虫中最具特征的dna结合蛋白家族。除了AP2 dna结合域外,ApiAP2蛋白之间几乎没有序列相似性。然而,在ApiAP2蛋白的一个子集中观察到一个保守的ap2 -一致结构域,主要位于c端(ACDC结构域)。该结构域的结构和功能尚不清楚。我们报道了来自不同疟原虫ApiAP2蛋白的两个ACDC结构域的晶体结构,揭示了一个保守的、独特的、非规范的四螺旋束结构。我们使用这些结构对已知抗疟化合物库进行了硅对接计算,并确定了潜在的小分子配体,这些配体结合在所有顶络合物ACDC结构域中存在的高度保守的疏水口袋中。这些配体为今后ACDC抑制剂的设计提供了新的分子基础。
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