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Antizyme Inhibitor 2 Hypomorphic Mice. New Patterns of Expression in Pancreas and Adrenal Glands Suggest a Role in Secretory Processes

机译:抗酶抑制剂2亚型的小鼠。胰腺和肾上腺的新表达模式提示在分泌过程中的作用

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摘要

The intracellular levels of polyamines, polycations implicated in proliferation, differentiation and cell survival, are regulated by controlling their biosynthesis, catabolism and transport. Antizymes and antizyme inhibitors are key regulatory proteins of polyamine levels by affecting ornithine decarboxylase, the rate-limiting biosynthetic enzyme, and polyamine uptake. We recently described the molecular function of a novel antizyme inhibitor (AZIN2). However, the physiological function of AZIN2 in mammals is mostly unknown. To gain insight on the tissue expression profile of AZIN2 and to find its possible physiological role, we have generated, transgenic mice with severe Azin2 hypomorphism. This mouse model expresses transgenic bacterial β-D-galactosidase as a reporter gene, under the control of the Azin2 endogenous promoter, what allows a very sensitive and specific detection of the expression of the gene in the different tissues of transgenic mice. The biochemical and histochemical analyses of β-D-galactosidase together with the quantification of Azin2 mRNA levels, corroborated that AZIN2 is mainly expressed in testis and brain, and showed for the first time that AZIN2 is also expressed in the adrenal glands and pancreas. In these tissues, AZIN2 was not expressed in all type of cells, but rather in specific type of cells. Thus, AZIN2 was mainly found in the haploid germinal cells of the testis and in different brain regions such as hippocampus and cerebellum, particularly in specific type of neurons. In the adrenal glands and pancreas, the expression was restricted to the adrenal medulla and to the Langerhans islets, respectively. Interestingly, plasma insulin levels were significantly reduced in the transgenic mice. These results support the idea that AZIN2 may have a role in the modulation of reproductory and secretory functions and that this mouse model might be an interesting tool for the progress of our understanding on the role of AZIN2 and polyamines in specific mammalian cells.
机译:细胞内多胺(参与增殖,分化和细胞存活的聚阳离子)的水平是通过控制其生物合成,分解代谢和转运来调节的。抗酶和抗酶抑制剂是影响鸟氨酸脱羧酶,限速生物合成酶和多胺吸收的多胺水平的关键调节蛋白。我们最近描述了新型抗酶抑制剂(AZIN2)的分子功能。但是,AZIN2在哺乳动物中的生理功能大多是未知的。为了深入了解AZIN2的组织表达谱并发现其可能的生理作用,我们制备了具有严重Azin2亚型的转基因小鼠。在Azin2内源启动子的控制下,该小鼠模型将转基因细菌β-D-半乳糖苷酶表达为报告基因,从而可以非常敏感和特异性地检测转基因小鼠不同组织中该基因的表达。 β-D-半乳糖苷酶的生化和组织化学分析以及Azin2 mRNA水平的定量,证实了AZIN2主要在睾丸和大脑中表达,并首次表明AZIN2在肾上腺和胰腺中也表达。在这些组织中,AZIN2不是在所有类型的细胞中表达,而是在特定类型的细胞中表达。因此,AZIN2主要存在于睾丸的单倍体生殖细胞和不同的大脑区域,例如海马和小脑,特别是在特定类型的神经元中。在肾上腺和胰腺中,该表达分别限于肾上腺髓质和朗格汉斯胰岛。有趣的是,转基因小鼠的血浆胰岛素水平显着降低。这些结果支持了AZIN2可能在调节生殖和分泌功能中起作用的想法,并且该小鼠模型可能是我们对AZIN2和多胺在特定哺乳动物细胞中的作用的了解的有趣工具。

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