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单通道鸟苷酸环化酶,一种三模态气味信号转导器。

ONE-GC membrane guanylate cyclase, a trimodal odorant signal transducer.

作者信息

Duda Teresa, Sharma Rameshwar K

机构信息

Research Divisions of Biochemistry and Molecular Biology, The Unit of Regulatory and Molecular Biology, Pennsylvania College of Optometry, Elkins Park, PA 19027, USA.

出版信息

Biochem Biophys Res Commun. 2008 Mar 7;367(2):440-5. doi: 10.1016/j.bbrc.2007.12.153. Epub 2008 Jan 4.

Abstract

The Ca(2+)-modulated ONE-GC membrane guanylate cyclase is a central component of the cyclic GMP signaling in odorant transduction. It is a single transmembrane spanning modular protein. Its intracellular region contains Ca(2+) sensor recognition domains linked to GCAP1 and to neurocalcin delta, and a catalytic module. These domains sense increments in free Ca(2+) and stimulate the catalytic module. The present study makes three significant mechanistic advancements. First, to date no ligand for the extracellular (ext) domain is known, for this reason ONE-GC has been deemed as an orphan receptor. The present study identifies its ligand. Uroguanylin stimulates ONE-GC through its ext domain. Second, so far no ligand is known that directly stimulates the catalytic module of any membrane guanylate cyclase. The presented evidence shows that in the presence of the semimicromolar range of free Ca(2+), neurocalcin binds to the catalytic module and stimulates ONE-GC. Thus, ONE-GC has trimodal regulation, two occurring intracellularly and one extracellularly. Third, guanylin, a urine odorant, does not directly stimulate ONE-GC. This challenges the proposed hypothesis that the guanylin odorant signal occurs via ONE-GC [T. Leinders-Zufall, R.E. Cockerham, S. Michalakis, M. Biel, D.L. Garbers, R.R. Reed, F. Zufall, S.D. Munger, Contribution of the receptor guanylyl cyclase GC-D to chemosensory function in the olfactory epithelium, Proc. Natl. Acad. Sci. USA. 104 (2007) 14507-14512].

摘要

钙离子调节的单通道鸟苷酸环化酶(ONE-GC)是嗅觉转导中环状鸟苷酸信号传导的核心组成部分。它是一种单跨膜的模块化蛋白质。其细胞内区域包含与GCAP1和神经钙蛋白δ相连的钙离子传感器识别结构域以及一个催化模块。这些结构域感知游离钙离子的增加并刺激催化模块。本研究取得了三项重要的机制进展。首先,迄今为止,细胞外(ext)结构域的配体尚不清楚,因此ONE-GC被视为孤儿受体。本研究鉴定出了其配体。尿鸟苷素通过其ext结构域刺激ONE-GC。其次,到目前为止,尚无已知的配体可直接刺激任何膜鸟苷酸环化酶的催化模块。所提供的证据表明,在半微摩尔范围的游离钙离子存在下,神经钙蛋白与催化模块结合并刺激ONE-GC。因此,ONE-GC具有三模态调节,其中两种发生在细胞内,一种发生在细胞外。第三,鸟苷素,一种尿液气味物质,不会直接刺激ONE-GC。这对所提出的鸟苷素气味信号通过ONE-GC产生的假说提出了挑战[T. Leinders-Zufall, R.E. Cockerham, S. Michalakis, M. Biel, D.L. Garbers, R.R. Reed, F. Zufall, S.D. Munger, 受体鸟苷酸环化酶GC-D对嗅觉上皮化学感受功能的贡献,美国国家科学院院刊. 104 (2007) 14507 - 14512]。

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