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Structural and evolutionary divergence of cyclic nucleotide binding domains in eukaryotic pathogens: Implications for drug design

机译:真核生物病原体中环状核苷酸结合域的结构和进化差异:药物设计的意义。

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摘要

Many cellular functions in eukaryotic pathogens are mediated by the cyclic nucleotide binding (CNB) domain, which senses second messengers such as cyclic AMP and cyclic GMP. Although CNB domain-containing proteins have been identified in many pathogenic organisms, an incomplete understanding of how CNB domains in pathogens differ from other eukaryotic hosts has hindered the development of selective inhibitors for CNB domains associated with infectious diseases. Here, we identify and classify CNB domain-containing proteins in eukaryotic genomes to understand the evolutionary basis for CNB domain functional divergence in pathogens. We identify 359 CNB domain-containing proteins in 31 pathogenic organisms and classify them into distinct subfamilies based on sequence similarity within the CNB domain as well as functional domains associated with the CNB domain. Our study reveals novel subfamilies with pathogen-specific variations in the phosphate-binding cassette. Analyzing these variations in light of existing structural and functional data provides new insights into ligand specificity and promiscuity and clues for drug design. This article is part of a Special Issue entitled: Inhibitors of Protein Kinases.
机译:真核病原体中的许多细胞功能是由环状核苷酸结合(CNB)结构域介导的,该结构域感知第二信使,例如环状AMP和环状GMP。尽管已在许多病原生物中鉴定出含CNB结构域的蛋白质,但对病原体中CNB结构域与其他真核宿主的差异的不完全了解阻碍了与传染病相关的CNB结构域选择性抑制剂的开发。在这里,我们鉴定和分类真核生物基因组中包含CNB域的蛋白质,以了解病原体中CNB域功能差异的进化基础。我们在31种病原生物中鉴定了359个含有CNB域的蛋白质,并根据CNB域内的序列相似性以及与CNB域相关的功能域将它们分为不同的亚家族。我们的研究揭示了在磷酸盐结合盒中具有病原体特异性变异的新型亚家族。根据现有的结构和功能数据分析这些变异,可以为配体特异性和混杂性提供新的见解,并为药物设计提供线索。本文是名为“蛋白激酶抑制剂”的特刊的一部分。

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