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基于稳定同位素的体内掺入对斑马鱼器官进行全球蛋白质表达谱分析。

Global protein expression profiling of zebrafish organs based on in vivo incorporation of stable isotopes.

作者信息

Nolte Hendrik, Konzer Anne, Ruhs Aaron, Jungblut Benno, Braun Thomas, Krüger Marcus

机构信息

Max Planck Institute for Heart and Lung Research, Parkstr. 1, 61231 Bad Nauheim, Germany.

出版信息

J Proteome Res. 2014 Apr 4;13(4):2162-74. doi: 10.1021/pr5000335. Epub 2014 Mar 21.

DOI:10.1021/pr5000335
PMID:24611545
Abstract

The zebrafish has become a widely used model organism employed for developmental studies, live cell imaging, and genetic screens. High-resolution transcriptional profiles of different developmental and adult stages of the fish and of its various organs were generated, which are readily accessible via the ZFIN database. In contrast, quantitative proteomic studies of zebrafish organs are still in their infancy. Here, we used the SILAC (stable isotope labeling by amino acids in cell culture) zebrafish as a "spike-in" reference to generate a protein atlas of nine organs including gills, brain, heart, muscle, liver, spleen, skin, swim bladder, and testis. Single-shot 4 h LC gradients coupled to a Quadrupole-Orbitrap (QExactive) instrument allowed identification of over 5000 proteins in less than 5 days, of which more than 70% were quantified in triplicate. Identified proteins were subjected to BLAST searches and Gene Ontology classification to improve annotation of zebrafish proteins and obtain insights into potential functions. Comparison to mouse tissue proteome data sets revealed differences and similarities in the protein composition of zebrafish versus mouse organs. We reason that the data set will be helpful for the proteomic characterization of zebrafish organs and identification of tissue-specific proteins that might serve as biomarkers. Our approach provides a complementary view into the biochemistry of zebrafish models and will assist large-scale protein quantification in zebrafish disease models.

摘要

斑马鱼已成为一种广泛用于发育研究、活细胞成像和基因筛选的模式生物。人们生成了斑马鱼不同发育阶段和成年阶段及其各个器官的高分辨率转录图谱,可通过ZFIN数据库轻松获取。相比之下,斑马鱼器官的定量蛋白质组学研究仍处于起步阶段。在此,我们使用稳定同位素标记氨基酸细胞培养法(SILAC)标记的斑马鱼作为“掺入”参考,生成了包括鳃、脑、心脏、肌肉、肝脏、脾脏、皮肤、鳔和睾丸在内的九个器官的蛋白质图谱。单次4小时液相色谱梯度与四极杆-轨道阱(QExactive)仪器联用,使得在不到5天的时间内鉴定出了5000多种蛋白质,其中70%以上的蛋白质进行了三次定量。对鉴定出的蛋白质进行BLAST搜索和基因本体分类,以改进斑马鱼蛋白质的注释,并深入了解其潜在功能。与小鼠组织蛋白质组数据集的比较揭示了斑马鱼与小鼠器官蛋白质组成的差异和相似之处。我们认为,该数据集将有助于斑马鱼器官的蛋白质组学表征以及鉴定可能作为生物标志物的组织特异性蛋白质。我们的方法为斑马鱼模型的生物化学提供了一个补充视角,并将有助于斑马鱼疾病模型中的大规模蛋白质定量分析。

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