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A Comparison of the Chicken and Turkey Proteomes and Phosphoproteomes in the Development of Poultry-Specific Immuno-Metabolism Kinome Peptide Arrays

机译:鸡和土耳其蛋白质组和磷酸化蛋白质组在禽类特异性免疫代谢激酶组序列开发中的比较

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The use of species-specific peptide arrays for the study of animal kinomes has a proven track record of success. This technique has been used in a variety of species for the study of host-pathogen interactions and metabolism. Species-specific peptide arrays have been designed previously for use with chicken, but a turkey array has never been attempted. In addition, arrays designed around individual cellular functions have been designed and utilized, but cross-function immuno-metabolic arrays have not been considered previously. Antecedent to designing separate chicken and turkey immuno-metabolic kinome peptide arrays, we show that while the chicken and turkey genomes are quite similar, the two species are much more distinct at the proteome and phosphoproteome levels. Despite a genome identity of approximately 90%, we observe that only 83% of chicken and turkey orthologous proteins display sequence matches between the two species. Further, less than 70% of kinase recognition target sequences are exact matches between chicken and turkey. Thus, our analysis shows that, at the proteome and kinome level, these two species must be considered separately in the design of novel peptide arrays. Our ultimate array design covers numerous immune and metabolic processes including innate and adaptive immunity, inflammatory responses, carbohydrate, protein and fat metabolism, and response to hormones. We have shown the proteomic and phosphoproteomic diversity of chicken and turkey and have designed a valuable research tool for the study of immuno-metabolism within these two species.
机译:使用物种特异性肽阵列进行动物动蛋白研究具有成功的成功记录。该技术已用于多种物种中,用于研究宿主与病原体的相互作用和代谢。先前已经设计了用于鸡的物种特异性肽阵列,但是从未尝试过使用火鸡阵列。另外,已经设计并利用了围绕单个细胞功能设计的阵列,但是以前尚未考虑跨功能免疫代谢阵列。在设计单独的鸡肉和火鸡免疫代谢激酶肽阵列之前,我们表明,尽管鸡肉和火鸡的基因组非常相似,但是这两个物种在蛋白质组和磷酸化蛋白质组水平上却相距甚远。尽管有大约90%的基因组同一性,我们观察到只有83%的鸡和火鸡直系同源蛋白显示出这两个物种之间的序列匹配。此外,少于70%的激酶识别靶序列是鸡和火鸡之间的精确匹配。因此,我们的分析表明,在蛋白质组和激酶组水平上,在设计新型肽阵列时必须分别考虑这两个物种。我们最终的阵列设计涵盖了许多免疫和代谢过程,包括先天和适应性免疫,炎症反应,碳水化合物,蛋白质和脂肪代谢以及对激素的反应。我们已经证明了鸡肉和火鸡的蛋白质组学和磷酸化蛋白质组学多样性,并设计了一种有价值的研究工具,用于研究这两个物种内的免疫代谢。

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