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可溶性鸟苷酸环化酶α2亚基的大脑表达与出生后发育期间的大脑成熟和感觉通路精细化相关。

Cerebral expression of the alpha2-subunit of soluble guanylyl cyclase is linked to cerebral maturation and sensory pathway refinement during postnatal development.

作者信息

Bidmon Hans-J, Starbatty Jutta, Görg Boris, Zilles Karl, Behrends Sönke

机构信息

C.& O. Vogt Institute of Brain Research, Heinrich-Heine-University, University Street 1, D-40225 Düsseldorf, Germany.

出版信息

Neurochem Int. 2004 Nov;45(6):821-32. doi: 10.1016/j.neuint.2004.03.012.

Abstract

Soluble guanylyl cylase (sGC) has been identified for being a receptor for the gaseous transmitters nitric oxide and carbon monoxide. Currently four subunits alpha1, alpha2, beta1, and beta2 have been characterized. Heterodimers of alpha and beta-subunits as well as homodimers of the beta2-subunit are known to constitute functional sGC which use GTP to form cGMP a potent signal molecule in a multitude of second messenger cascades. Since NO-cGMP signaling plays a pivotal role in neuronal development we analyzed the maturational expression pattern of the newly characterized alpha2-subunit of sGC within the brain of Wistar rats by means of RNase protection assay and immunohistochemistry. alpha2-subunit mRNA as well as immunoreactive alpha2-protein increased during postnatal cerebral development. Topographical analysis revealed a selective high expression of the alpha2-subunit in the choroid plexus and within developing sensory systems involving the olfactory and somatosensory system of the forebrain as well as parts of the auditory and visual system within the hindbrain. In cultured cortical neurons the alpha2-subunit was localized to the cell membrane, especially along neuronal processes. During the first 11 days of postnatal development several cerebral regions showed a distinct expression of the alpha2-subunit which was not paralleled by the alpha1/beta1-subunits especially within the developing thalamo-cortical circuitries of the somatosensory system. However, at later developmental stages all three subunits became more homogenously distributed among most cerebral regions, indicating that functional alpha1/beta1 and alpha2/beta1 heterodimers of sGC could be formed. Our findings indicate that the alpha2-subunit is an essential developmentally regulated constituent of cerebral sensory systems during maturation. In addition the alpha2-subunit may serve other functions than forming a functional heterodimer of sGC during the early phases of sensory pathway refinement.

摘要

可溶性鸟苷酸环化酶(sGC)已被确定为气体递质一氧化氮和一氧化碳的受体。目前已鉴定出四个亚基,即α1、α2、β1和β2。已知α亚基和β亚基的异二聚体以及β2亚基的同二聚体构成功能性sGC,其利用GTP形成环磷酸鸟苷(cGMP),cGMP是众多第二信使级联反应中的一种强效信号分子。由于一氧化氮 - 环磷酸鸟苷信号在神经元发育中起关键作用,我们通过核糖核酸酶保护分析和免疫组织化学方法,分析了Wistar大鼠大脑中sGC新鉴定的α2亚基的成熟表达模式。α2亚基mRNA以及免疫反应性α2蛋白在出生后大脑发育过程中增加。拓扑分析显示,α2亚基在前脑的脉络丛以及涉及嗅觉和躯体感觉系统的发育中的感觉系统内选择性高表达,以及后脑内听觉和视觉系统的部分区域。在培养的皮质神经元中,α2亚基定位于细胞膜,特别是沿着神经突。在出生后发育的前11天,几个脑区显示出α2亚基的明显表达,这与α1/β1亚基不同,特别是在躯体感觉系统发育中的丘脑 - 皮质回路中。然而,在发育后期,所有三个亚基在大多数脑区中分布得更加均匀,这表明可以形成功能性的sGCα1/β1和α2/β1异二聚体。我们的研究结果表明,α2亚基是成熟过程中大脑感觉系统中一种受发育调节的重要成分。此外,在感觉通路细化的早期阶段,α2亚基可能具有除形成功能性sGC异二聚体之外的其他功能。

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