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Molecular Evolution and Structural Features of IRAK Family Members

机译:IRaK家族成员的分子进化和结构特点

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摘要

The interleukin-1 receptor-associated kinase (IRAK) family comprises critical signaling mediators of the TLR/IL-1R signaling pathways. IRAKs are Ser/Thr kinases. There are 4 members in the vertebrate genome (IRAK1, IRAK2, IRAKM, and IRAK4) and an IRAK homolog, Pelle, in insects. IRAK family members are highly conserved in vertebrates, but the evolutionary relationship between IRAKs in vertebrates and insects is not clear. To investigate the evolutionary history and functional divergence of IRAK members, we performed extensive bioinformatics analysis. The phylogenetic relationship between IRAK sequences suggests that gene duplication events occurred in the evolutionary lineage, leading to early vertebrates. A comparative phylogenetic analysis with insect homologs of IRAKs suggests that the Tube protein is a homolog of IRAK4, unlike the anticipated protein, Pelle. Furthermore, the analysis supports that an IRAK4-like kinase is an ancestral protein in the metazoan lineage of the IRAK family. Through functional analysis, several potentially diverged sites were identified in the common death domain and kinase domain. These sites have been constrained during evolution by strong purifying selection, suggesting their functional importance within IRAKs. In summary, our study highlighted the molecular evolution of the IRAK family, predicted the amino acids that contributed to functional divergence, and identified structural variations among the IRAK paralogs that may provide a starting point for further experimental investigations.
机译:白细胞介素1受体相关激酶(IRAK)家族包含TLR / IL-1R信号传导途径的关键信号传导介质。 IRAK是Ser / Thr激酶。昆虫的脊椎动物基因组中有4个成员(IRAK1,IRAK2,IRAKM和IRAK4)和IRAK同源物Pelle。 IRAK家族成员在脊椎动物中高度保守,但是在脊椎动物和昆虫中IRAK之间的进化关系尚不清楚。为了调查IRAK成员的进化史和功能差异,我们进行了广泛的生物信息学分析。 IRAK序列之间的系统发育关系表明基因复制事件发生在进化谱系中,从而导致早期脊椎动物。用IRAK的昆虫同源物进行的系统进化分析表明,Tube蛋白是IRAK4的同源物,与预期的蛋白质Pelle不同。此外,该分析支持IRAK4样激酶是IRAK家族后生谱系中的祖先蛋白。通过功能分析,在共同的死亡结构域和激酶结构域中发现了几个潜在的分歧位点。这些位点在进化过程中受到强大的纯化选择的限制,表明它们在IRAK中的功能重要性。总而言之,我们的研究突出了IRAK家族的分子进化,预测了导致功能差异的氨基酸,并鉴定了IRAK旁系同源物之间的结构变异,可为进一步的实验研究提供起点。

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