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神经调节素 S 在大鼠脑中的分布不同:NMS 肽不仅存在于下丘脑作为 mRNA,也存在于脑干中。

Different distribution of neuromedin S and its mRNA in the rat brain: NMS peptide is present not only in the hypothalamus as the mRNA, but also in the brainstem.

机构信息

Department of Biochemistry, National Cerebral and Cardiovascular Center Research Institute Osaka, Japan.

出版信息

Front Endocrinol (Lausanne). 2012 Dec 3;3:152. doi: 10.3389/fendo.2012.00152. eCollection 2012.

Abstract

Neuromedin S (NMS) is a neuropeptide identified as another endogenous ligand for two orphan G protein-coupled receptors, FM-3/GPR66 and FM-4/TGR-1, which have also been identified as types 1 and 2 receptors for neuromedin U structurally related to NMS. Although expression of NMS mRNA is found mainly in the brain, spleen, and testis, the distribution of its peptide has not yet been investigated. Using a newly prepared antiserum, we developed a highly sensitive radioimmunoassay for rat NMS. NMS peptide was clearly detected in the rat brain at a concentration of 68.3 ± 3.4 fmol/g wet weight, but it was hardly detected in the spleen and testis. A high content of NMS peptide was found in the hypothalamus, midbrain, and pons-medulla oblongata, whereas abundant expression of NMS mRNA was detected only in the hypothalamus. These differing distributions of the mRNA and peptide suggest that nerve fibers originating from hypothalamic NMS neurons project into the midbrain, pons, or medulla oblongata. In addition, abundant expression of type 2 receptor mRNA was detected not only in the hypothalamus, but also in the midbrain and pons-medulla oblongata. These results suggest novel, unknown physiological roles of NMS within the brainstem.

摘要

神经调节素 S(NMS)是一种神经肽,被鉴定为两种孤儿 G 蛋白偶联受体(FM-3/GPR66 和 FM-4/TGR-1)的另一种内源性配体,这两种受体也被鉴定为与 NMS 结构相关的神经调节素 U 的 1 型和 2 型受体。虽然 NMS mRNA 的表达主要在大脑、脾脏和睾丸中发现,但尚未研究其肽的分布。使用新制备的抗血清,我们开发了一种用于大鼠 NMS 的高灵敏度放射免疫测定法。在大鼠脑中清楚地检测到 NMS 肽,浓度为 68.3±3.4 fmol/g 湿重,但在脾脏和睾丸中几乎检测不到。在下丘脑、中脑和脑桥延髓中发现 NMS 肽含量高,而仅在下丘脑检测到 NMS mRNA 的丰富表达。mRNA 和肽的这种不同分布表明,源自下丘脑 NMS 神经元的神经纤维投射到中脑、脑桥或延髓。此外,2 型受体 mRNA 的丰富表达不仅在下丘脑,而且在中脑和脑桥延髓中也被检测到。这些结果表明 NMS 在脑干内具有新的、未知的生理作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0e36/3524995/f43bf8e0d9aa/fendo-03-00152-g001.jpg

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