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Expression and subcellular localization of Spred proteins in mouse and human tissues.

机译:Spred蛋白在小鼠和人体组织中的表达和亚细胞定位。

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摘要

Spred-1 and Spred-2 (Sprouty-related protein with an EVH1 domain) are recently described members of the EVH1 (Ena/VASP-homology domain 1) family. Both Spred-1 and Spred-2 are membrane-associated substrates of receptor tyrosine kinases and they act as negative regulators of the Ras pathway upon growth factor stimulation. Since the Spred family members seem to exert overlapping molecular functions, the isotype-specific function of each member remains enigmatic. To date, no comprehensive expression profiling of Spred proteins has been shown. Therefore, we compared mRNA and protein expression patterns of Spred-1 and Spred-2 systematically in mouse organs. Furthermore, we focused on the tissue-specific expression of Spred-2 in adult human tissues, the subcellular localization, and the potential role of Spred-2 in the organism. Our studies show that expression patterns of Spred-1 and Spred-2 differ markedly among various tissues and cell types. In mouse, Spred-1 and Spred-2 were found to be expressed predominantly in brain, whereas Spred-2 was found to be more widely expressed in various adult tissues than Spred-1. In humans, Spred-2 was found to be strongly expressed in glandular epithelia and, at the subcellular level, its immunoreactivity was associated with secretory vesicles. Using confocal microscopy we found Spred-2 to be strongly colocalized with Rab11 and, to a lesser extent, with Rab5a GTPase, an observation that was not made for Spred-1. We conclude that the two members of the recently discovered Spred protein family, Spred-1 and Spred-2, show a highly specific expression pattern in various tissues reflecting a specific physiological role for the individual Spred isoforms in these tissues. Furthermore, it becomes most likely that Spred-2 is involved in the regulation of secretory pathways.
机译:最近描述了Spred-1和Spred-2(具有EVH1域的Sprouty相关蛋白)是EVH1(Ena / VASP同源域1)家族的成员。 Spred-1和Spred-2都是受体酪氨酸激酶的膜相关底物,在生长因子刺激后它们充当Ras途径的负调节剂。由于Spred家族成员似乎发挥了重叠的分子功能,因此每个成员的同种型特异性功能仍然难以捉摸。迄今为止,还没有显示Spred蛋白的全面表达谱。因此,我们系统地比较了小鼠器官中Spred-1和Spred-2的mRNA和蛋白质表达模式。此外,我们专注于成人组织中Spred-2的组织特异性表达,亚细胞定位以及Spred-2在生物体中的潜在作用。我们的研究表明,Spred-1和Spred-2的表达模式在各种组织和细胞类型之间明显不同。在小鼠中,发现Spred-1和Spred-2主要在大脑中表达,而发现Spred-2在各种成年组织中的表达均比Spred-1广泛。在人类中,发现Spred-2在腺上皮中强烈表达,并且在亚细胞水平上,其免疫反应性与分泌性囊泡有关。使用共聚焦显微镜,我们发现Spred-2与Rab11强烈共定位,并且在较小程度上与Rab5a GTPase共定位,这一发现并非针对Spred-1。我们得出的结论是,最近发现的Spred蛋白家族的两个成员Spred-1和Spred-2在各种组织中显示了高度特异性的表达模式,反映了这些组织中各个Spred同工型的特定生理作用。此外,Spred-2最有可能参与分泌途径的调节。

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