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首页> 外文期刊>Journal of proteome research >Phosphoproteomic Analysis of Protein Phosphorylation Networks in the Hypopharyngeal Gland of Honeybee Workers (Apis mellifera ligustica)
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Phosphoproteomic Analysis of Protein Phosphorylation Networks in the Hypopharyngeal Gland of Honeybee Workers (Apis mellifera ligustica)

机译:蜜蜂下咽腺蛋白磷酸化网络的磷酸化蛋白质组学分析(Apis mellifera ligustica)

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The hypopharyngeal gland (HG) in honeybee workers changes functions according to physiological age in the bee colony from producing royal jelly (RJ) in nurse bees to digestive enzymes in foragers. The same set of secretory cells expresses different genes or proteins to create these age-dependent changes; however, it is unknown precisely how the phosphorylation network regulates physiological differences across the development of the adult worker HG. We employed high-accuracy mass-spectrometry-based proteomics to survey phosphoproteome changes in the newly emerged, nurse, and forager bees. Overall, 941, 1322, and 1196 phosphorylation sites matching 1007, 1353, and 1199 phosphopeptides from 549, 720, and 698 phosphoproteins were identified in the three ages of the HG, respectively. Specialized, interconnected phosphorylation networks within each age were found by comparing protein abundance and phosphorylation levels. This illustrates that many proteins are regulated by phosphorylation independent of their expression levels. Furthermore, proteins in key biological processes and pathways were dynamically phosphorylated with age development, including the centrosome cycle, mitotic spindle elongation, macromolecular complex disassembly, and ribosome, indicating that phosphorylation tunes protein activity to optimize cellular behavior of the HG over time. Moreover, complementary protein and phosphoprotein expression is required to support the unique physiology of secretory activity in the HG. This reported data set of the honeybee phosphoproteome significantly improves our understanding of a range of regulatory mechanisms controlling a variety of cellular processes and will serve as a valuable resource for those studying the honeybee and other insects.
机译:蜜蜂工人的下咽腺(HG)会根据蜂群的生理年龄,从护士蜂的蜂王浆(RJ)到觅食者的消化酶而改变功能。同一组分泌细胞表达不同的基因或蛋白质来产生这些年龄相关的变化。然而,精确地了解磷酸化网络如何调节成年工人HG发育过程中的生理差异。我们使用了基于质谱的高精度蛋白质组学来调查新出现的,养蜂和觅食蜂中磷酸化蛋白质组的变化。总体而言,在HG的三个年龄段分别鉴定出与549、720和698个磷蛋白的1007、1353和1199个磷肽相匹配的941、1322和1196个磷酸化位点。通过比较蛋白质丰度和磷酸化水平,发现了各个年龄段的专门的,相互连接的磷酸化网络。这说明许多蛋白质不受其表达水平的影响而受到磷酸化的调节。此外,关键生物过程和途径中的蛋白质会随着年龄的增长而动态磷酸化,包括中心体周期,有丝分裂纺锤体伸长,大分子复合物分解和核糖体,这表明磷酸化可调节蛋白质活性,从而随着时间的推移优化HG的细胞行为。而且,需要互补蛋白和磷蛋白表达来支持HG中分泌活性的独特生理学。这个报道的蜜蜂磷酸化蛋白质组数据集极大地提高了我们对控制各种细胞过程的一系列调节机制的理解,并将为那些研究蜜蜂和其他昆虫的人提供宝贵的资源。

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