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糖酵解酶烯醇化酶的神经元和神经胶质形式的存在及其神经生物学意义。

The existence and neurobiological significance of neuronal and glial forms of the glycolytic enzyme enolase.

作者信息

Marangos P J, Schmechel D, Zis A P, Goodwin F K

出版信息

Biol Psychiatry. 1979 Aug;14(4):563-79.

PMID:385064
Abstract

The isoenzymes of the glycolytic enzyme enolase have been separated and purified. The structural and functional properties of two brain enolases are described. Immunocytochemical techniques have established that one brain enolase is restricted to neuronal cells (neuron-specific enolase, NSE) while the other is localized in glial cells (nonneuronal enolase, NNE). The brain enolases, therefore, represent the first example of functional markers for neuronal and glial cell types in brain. The two enzymes are structurally distinct with the evidence establishing that they are products of separate genes. Functionally, the neuronal enolase has been demonstrated to be uniquely stable to concentrations of chloride salts that rapidly inactivate the glial enzyme. NSE may therefore represent an adaptation of this enzyme that is specifically suited to the neuronal milieu. A specific radioimmunoassay is described for NNE and NSE with the studies reported indicating that neuronal enzyme levels vary considerably when different brain areas are compared, suggesting a relationship between functional activity and levels of NSE. In addition to being a marker for neuronal cells, NSE has also been found to be present in various glands. The cells of the APUD series (amine precursor uptake and decarboxylation cells) in the pituitary, adrenal medulla, pineal, thyroid, and pancreas have been shown to contain NSE. NSE is, therefore, also a marker for these neuronlike endocrine cells since they are the only cells other than neurons that contain this protein.

摘要

糖酵解酶烯醇化酶的同工酶已被分离和纯化。本文描述了两种脑烯醇化酶的结构和功能特性。免疫细胞化学技术已证实,一种脑烯醇化酶仅限于神经元细胞(神经元特异性烯醇化酶,NSE),而另一种则定位于神经胶质细胞(非神经元烯醇化酶,NNE)。因此,脑烯醇化酶代表了脑中神经元和神经胶质细胞类型功能标志物的首个实例。这两种酶在结构上不同,有证据表明它们是不同基因的产物。在功能上,已证明神经元烯醇化酶对氯化物盐浓度具有独特的稳定性,而这种浓度会迅速使神经胶质酶失活。因此,NSE可能代表了这种酶的一种适应性变化,特别适合神经元环境。本文描述了一种针对NNE和NSE的特异性放射免疫测定法,所报道的研究表明,当比较不同脑区时,神经元酶水平有很大差异,这表明功能活性与NSE水平之间存在关联。除了作为神经元细胞的标志物外,还发现NSE存在于各种腺体中。已证明垂体、肾上腺髓质、松果体、甲状腺和胰腺中的APUD系列细胞(胺前体摄取和脱羧细胞)含有NSE。因此,NSE也是这些类神经元内分泌细胞的标志物,因为它们是除神经元外唯一含有这种蛋白质的细胞。

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The existence and neurobiological significance of neuronal and glial forms of the glycolytic enzyme enolase.糖酵解酶烯醇化酶的神经元和神经胶质形式的存在及其神经生物学意义。
Biol Psychiatry. 1979 Aug;14(4):563-79.
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Multifunctional neuron-specific enolase: its role in lung diseases.多功能神经元特异性烯醇化酶:在肺部疾病中的作用。
Biosci Rep. 2019 Nov 29;39(11). doi: 10.1042/BSR20192732.
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Effects of growth factors and gut hormones on proliferation of primary cultured gastric mucous cells of guinea pig.生长因子和肠道激素对豚鼠原代培养胃黏液细胞增殖的影响。
J Gastroenterol. 1996 Aug;31(4):498-504. doi: 10.1007/BF02355048.
3
Quantitative alterations of S-100 protein and neuron specific enolase in the rat nervous system after chronic 2,5-hexanedione exposure.
慢性2,5 -己二酮暴露后大鼠神经系统中S - 100蛋白和神经元特异性烯醇化酶的定量变化
Neurochem Res. 1993 Feb;18(2):203-8. doi: 10.1007/BF01474685.
4
An immunocytochemical investigation of non-neuronal enolase in cerebellum: a new astrocyte marker.
Histochem J. 1981 Jan;13(1):137-48. doi: 10.1007/BF01005846.
5
Immunocytochemical study on the localization of neuron-specific enolase and S-100 protein in the carotid body of rats.大鼠颈动脉体中神经元特异性烯醇化酶和S-100蛋白定位的免疫细胞化学研究。
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Neuron-specific enolase-like immunoreactivity in the vertebrate retina: selective labelling of Müller cells in Anura.
Histochemistry. 1992 Nov;98(4):243-52. doi: 10.1007/BF00271038.