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精氨酸酶:大鼠和人脑精氨酸信号的关键?

The agmatine-degrading enzyme agmatinase: a key to agmatine signaling in rat and human brain?

机构信息

Department of Psychiatry, Medical Faculty, Otto-von-Guericke-University, Magdeburg, Germany.

出版信息

Amino Acids. 2011 Feb;40(2):453-65. doi: 10.1007/s00726-010-0657-5. Epub 2010 Jun 20.

Abstract

Agmatinase, an ureohydrolase belonging to the arginase family, is widely expressed in mammalian tissues including the brain. Here, it may serve two different functions, the inactivation of the arginine derivative agmatine, a putative neurotransmitter, and the formation of the diamine putrescine. In order to identify the cellular sources of agmatinase expression in the brain, we generated a polyclonal monospecific antibody against recombinant rat agmatinase. With immunocytochemistry, selected areas of rat and human brain were screened. Clearly, in both species agmatinase-like immunoreactivity was predominantly detected in distinct populations of neurons, especially cortical interneurons. Also, principal neurons in limbic regions like the habenula and in the cerebellum robustly expressed agmatinase protein. When comparing the overall agmatinase expression with immunocytochemical data available for agmatine and polyamine biosynthetic enzymes, the observed pattern may argue in favor of an agmatine inactivating function rather than fueling the alternative pathway of polyamine synthesis. The putative neurotransmitter agmatine is seemingly involved with mental disorders. Therefore, agmatinase may be similarly important for pathogenesis. The normal expression profile of the protein as described here may therefore be altered under pathological conditions.

摘要

胍氨酸酶是精氨酸酶家族中的一种尿水解酶,广泛存在于哺乳动物组织中,包括大脑。在这里,它可能具有两种不同的功能,即失活精氨酸衍生物胍丁胺(一种潜在的神经递质)和形成二胺腐胺。为了确定大脑中胍氨酸酶表达的细胞来源,我们生成了一种针对重组大鼠胍氨酸酶的多克隆单特异性抗体。通过免疫细胞化学,筛选了大鼠和人类大脑的选定区域。显然,在这两种物种中,胍氨酸酶样免疫反应主要存在于神经元的不同群体中,尤其是皮质中间神经元。此外,边缘区域(如缰核)和小脑的主要神经元也强烈表达胍氨酸酶蛋白。当将整体胍氨酸酶表达与可用的胍丁胺和多胺生物合成酶的免疫细胞化学数据进行比较时,观察到的模式可能支持胍丁胺失活功能,而不是为多胺合成的替代途径提供燃料。拟议的神经递质胍丁胺似乎与精神障碍有关。因此,胍氨酸酶可能对发病机制同样重要。这里描述的蛋白质的正常表达谱可能会在病理条件下发生改变。

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