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Flagellar proteins prediction after sequence-structure alignments of coronin and Arp2/3 complex in Leishmania spp.

机译:在LeishMania SPP中序列结构对准后序列结构比对序列结构序列蛋白质的预测。

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Leishmania are uniflagellate protozoa, whose flagellum plays a key role in motility, being essential for parasite migration, invasion and persistence on host tissues. Actin is the major cytoskeleton protein, while polymerization and depolymerization of parasite actin and actin motor-associated proteins during both processes of motility and host cell entry might be key events for successful infection. In search for genomic and/or proteomic evidences of actininteracting proteins (AIPs) involved in flagellar activities of Leishmania spp., we have applied computational tools (hidden Markov models, Viterbi algorithm and comparative modeling) to infer biological meaning through detailed sequencestructural- functional analyses on Leishmania AIPs, such as coronin and Arp2/3 complex proteins, two important elements on phagosome formation after parasite phagocytosis by macrophages. Results presented here provide the first integrated bioinformatics analyses of Leishmania coronin and Arp2/3 genes and their gene products, a direct contribution to genome annotation of these important actin-regulating proteins yet to be properly in vitro characterized in flagellate trypanosomatids towards their putative virulence.
机译:利什曼是Uniflarlate原生动物,其鞭毛在动力中起着关键作用,对寄生虫迁移,侵袭和持续存在于宿主组织至关重要。肌动蛋白是主要的细胞骨架蛋白,而在运动性和宿主细胞进入的过程中寄生虫和肌动蛋白的聚合和肌动蛋白电动蛋白的聚合,可能是成功感染的关键事件。寻找参与Leishmania SPP的鞭打蛋白(AIP)的基因组和/或蛋白质组学证据,我们通过详细的序列结构 - 功能分析应用了应用计算工具(隐马尔可夫模型,维特比算法和比较建模)来推断生物学意义在Leishmania AIPs,如Coronin和Arp2 / 3复合蛋白,通过巨噬细胞寄生虫吞噬作用后的吞噬蛋白酶组的两个重要元素。这里提出的结果提供了Leishmania coronin和ARP2 / 3基因及其基因产物的第一种综合生物信息分析,以及对这些重要的肌动蛋白调节蛋白的基因组注释的直接贡献尚不适当地体外,其特征在体外,其特征在于鞭毛蛋白酶粉刺毒素朝其推定的毒力。

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