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恶性疟原虫 FIKK9.1 是一种单体丝氨酸/苏氨酸蛋白激酶,具有作为药物靶点的特征。

Plasmodium falciparum FIKK9.1 is a monomeric serine-threonine protein kinase with features to exploit as a drug target.

机构信息

Malaria Research Group, Department of Biosciences and Bioengineering, Indian Institute of Technology-Guwahati, Guwahati, Assam, India.

Molecular and Structural Biology Division, CSIR-Central Drug Research Institute, Lucknow, Uttar Pradesh, India.

出版信息

Chem Biol Drug Des. 2021 Apr;97(4):962-977. doi: 10.1111/cbdd.13821. Epub 2021 Jan 23.

Abstract

FIKK-9.1 is essential for parasite survival, but its structural and biochemical characterization will enable us to understand its role in the parasite life cycle. The recombinant FIKK9.1 kinase is monomeric with a native molecular weight of 60 ± 1.6 kDa. Structural characterization of FIKK9.1 kinase reveals that it consists of two domains: N-terminal FHA like domain and C-terminal kinase domain. The C-terminal domain has a well-defined pocket, but it displayed RMSD deviation of 1.38-3.2 Å from host kinases. ITC analysis indicates that ATP binds to the protein with a K of 45.6 ± 2.4 µM. Mutational studies confirm the role of Val-244, Met-245, Lys-320, 324, and Glu-366 for ATP binding. Co-localization studies revealed FIKK9.1 in the parasite cytosol with a component trafficked to the apicoplast and also to IRBC. FIKK9.1 has 23 pockets to serve as potential docking sites for substrates. Correlation analysis of peptides from the combinatorial library concluded that peptide P277 (MFDFHYTLGPMWGTL) was fitting nicely into the binding pocket. The peptide P277 picked up candidates from parasite and key players from RBC cytoskeleton. Interestingly, FIKK9.1 is phosphorylating spectrin, ankyrin, and band-3 from RBC cytoskeleton. Our study highlights the structural and biochemical features of FIKK9.1 to exploit it as a drug target.

摘要

FIKK-9.1 对寄生虫的生存至关重要,但对其结构和生化特性的研究将有助于我们了解它在寄生虫生命周期中的作用。重组 FIKK9.1 激酶是单体,天然分子量为 60±1.6 kDa。FIKK9.1 激酶的结构特征表明,它由两个结构域组成:N 端 FHA 样结构域和 C 端激酶结构域。C 端结构域有一个明确的口袋,但与宿主激酶相比,其 RMSD 偏差为 1.38-3.2 Å。ITC 分析表明,ATP 与蛋白的结合 Kd 为 45.6±2.4 μM。突变研究证实 Val-244、Met-245、Lys-320、324 和 Glu-366 对 ATP 结合至关重要。共定位研究表明,FIKK9.1 存在于寄生虫细胞质中,部分与质体和 IRBC 共定位。FIKK9.1 有 23 个口袋可作为潜在的底物结合位点。组合文库中肽段的相关分析表明,肽段 P277(MFDFHYTLGPMWGTL)很好地结合在结合口袋中。该肽段 P277 从寄生虫和 RBC 细胞骨架中的关键蛋白中识别出候选药物。有趣的是,FIKK9.1 可以使 RBC 细胞骨架中的血影蛋白、锚蛋白和带 3 磷酸化。我们的研究强调了 FIKK9.1 的结构和生化特性,可将其作为药物靶点加以利用。

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