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恶性疟原虫顶质体DNA聚合酶的晶体结构:对质体A家族DNA聚合酶的首次观察。

Crystal Structure of the Apicoplast DNA Polymerase from Plasmodium falciparum: The First Look at a Plastidic A-Family DNA Polymerase.

作者信息

Milton Morgan E, Choe Jun-Yong, Honzatko Richard B, Nelson Scott W

机构信息

Department of Biochemistry, Biophysics, and Molecular Biology, Iowa State University, Ames, IA 50011, USA.

Department of Biochemistry and Molecular Biology, Rosalind Franklin University of Medicine and Science, North Chicago, IL 60064, USA.

出版信息

J Mol Biol. 2016 Oct 9;428(20):3920-3934. doi: 10.1016/j.jmb.2016.07.016. Epub 2016 Jul 31.

Abstract

Plasmodium falciparum, the primary cause of malaria, contains a non-photosynthetic plastid called the apicoplast. The apicoplast exists in most members of the phylum Apicomplexa and has its own genome along with organelle-specific enzymes for its replication. The only DNA polymerase found in the apicoplast (apPOL) was putatively acquired through horizontal gene transfer from a bacteriophage and is classified as an atypical A-family polymerase. Here, we present its crystal structure at a resolution of 2.9Å. P. falciparum apPOL, the first structural representative of a plastidic A-family polymerase, diverges from typical A-family members in two of three previously identified signature motifs and in a region not implicated by sequence. Moreover, apPOL has an additional N-terminal subdomain, the absence of which severely diminishes its 3' to 5' exonuclease activity. A compound known to be toxic to Plasmodium is a potent inhibitor of apPOL, suggesting that apPOL is a viable drug target. The structure provides new insights into the structural diversity of A-family polymerases and may facilitate structurally guided antimalarial drug design.

摘要

恶性疟原虫是疟疾的主要病因,它含有一种名为顶质体的非光合质体。顶质体存在于顶复门的大多数成员中,有自己的基因组以及用于其复制的细胞器特异性酶。在顶质体中发现的唯一一种DNA聚合酶(apPOL)据推测是通过水平基因转移从噬菌体获得的,被归类为非典型A家族聚合酶。在此,我们展示了其分辨率为2.9Å的晶体结构。恶性疟原虫apPOL是质体A家族聚合酶的首个结构代表,在先前确定的三个特征基序中的两个以及一个序列未涉及的区域与典型A家族成员不同。此外,apPOL有一个额外的N端亚结构域,缺少该亚结构域会严重降低其3'至5'核酸外切酶活性。一种已知对疟原虫有毒的化合物是apPOL的有效抑制剂,这表明apPOL是一个可行的药物靶点。该结构为A家族聚合酶的结构多样性提供了新见解,并可能有助于基于结构的抗疟药物设计。

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