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在蜜蜂幼虫发育过程中蛋白质表达的变化。

Changes in protein expression during honey bee larval development.

机构信息

Centre for High-Throughput Biology, Department of Biochemistry and Molecular Biology, University of British Columbia, Vancouver, BC, Canada.

出版信息

Genome Biol. 2008 Oct 29;9(10):R156. doi: 10.1186/gb-2008-9-10-r156.

Abstract

BACKGROUND

The honey bee (Apis mellifera), besides its role in pollination and honey production, serves as a model for studying the biochemistry of development, metabolism, and immunity in a social organism. Here we use mass spectrometry-based quantitative proteomics to quantify nearly 800 proteins during the 5- to 6-day larval developmental stage, tracking their expression profiles.

RESULTS

We report that honey bee larval growth is marked by an age-correlated increase of protein transporters and receptors, as well as protein nutrient stores, while opposite trends in protein translation activity and turnover were observed. Levels of the immunity factors prophenoloxidase and apismin are positively correlated with development, while others surprisingly were not significantly age-regulated, suggesting a molecular explanation for why bees are susceptible to major age-associated bee bacterial infections such as American Foulbrood or fungal diseases such as chalkbrood. Previously unreported findings include the reduction of antioxidant and G proteins in aging larvae.

CONCLUSION

These data have allowed us to integrate disparate findings in previous studies to build a model of metabolism and maturity of the immune system during larval development. This publicly accessible resource for protein expression trends will help generate new hypotheses in the increasingly important field of honey bee research.

摘要

背景

除了在授粉和蜂蜜生产方面的作用外,蜜蜂(Apis mellifera)还可以作为研究发育、代谢和免疫的生物化学的模型,特别是在社会性生物中。在这里,我们使用基于质谱的定量蛋白质组学技术来定量研究 5 到 6 天龄幼虫发育阶段近 800 种蛋白质,追踪它们的表达谱。

结果

我们报告说,蜜蜂幼虫的生长伴随着与年龄相关的蛋白质转运体和受体以及蛋白质营养储存的增加,而蛋白质翻译活性和周转率则呈现相反的趋势。免疫因子原酚氧化酶和apismin 的水平与发育呈正相关,而其他因子的水平则没有明显的年龄调节,这为为什么蜜蜂容易受到美国烂子病或真菌病等主要与年龄相关的蜜蜂细菌性感染的影响提供了分子解释。以前未报道的发现包括衰老幼虫中抗氧化剂和 G 蛋白的减少。

结论

这些数据使我们能够整合以前研究中的不同发现,构建一个在幼虫发育过程中代谢和免疫系统成熟的模型。这个公开的蛋白质表达趋势资源将有助于在日益重要的蜜蜂研究领域产生新的假设。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/05e5/2760883/e51eda496840/gb-2008-9-10-r156-5.jpg

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