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非洲爪蟾大脑和垂体中胞吐蛋白SNAP-25的定位及生理调节

Localization and physiological regulation of the exocytosis protein SNAP-25 in the brain and pituitary gland of Xenopus laevis.

作者信息

Kolk S M, Nordquist R, Tuinhof R, Gagliardini L, Thompson B, Cools A R, Roubos E W

机构信息

Department of Cellular Animal Physiology, Nijmegen Institute for Neurosciences, University of Nijmegen, The Netherlands.

出版信息

J Neuroendocrinol. 2000 Jul;12(7):694-706. doi: 10.1046/j.1365-2826.2000.00500.x.

Abstract

In mammals, the synaptosomal-associated protein of 25 kDa, SNAP-25, is generally thought to play a role in synaptic exocytosis of neuronal messengers. Using a polyclonal antiserum against rat SNAP-25, we have shown the presence of a SNAP-25-like protein in the brain of the South-African clawed toad Xenopus laevis by Western blotting and immunocytochemistry. Xenopus SNAP-25 is ubiquitously present throughout the brain, where its distribution in various identified neuronal perikarya and axon tracts is described. Western blot analysis and immunocytochemistry also demonstrated the presence of SNAP-25 in the neural, intermediate and distal lobes of the pituitary gland. Intensity line plots of confocal laser scanning microscope images of isolated melanotropes indicated that SNAP-25 is produced and processed in the rough endoplasmatic reticulum and Golgi apparatus, and is associated with the plasma membrane. Immunoelectron microscopy substantiated the idea that SNAP-25 is present in the plasma membrane but also showed a close association of SNAP-25 with the bounding membrane of peptide-containing secretory granules in both the neurohemal axon terminals in the neural lobe and the endocrine melanotropes in the intermediate lobe. Quantitative Western blotting revealed that adapting Xenopus to a dark background has a clear stimulatory effect on the expression of SNAP-25 in the neural lobe and in the melanotrope cells. This background light intensity-dependent stimulation of SNAP-25 expression was confirmed by the demonstration of increased immunofluorescence recorded by confocal laser scanning microscopy of individual melanotropes of black background-adapted toads. On the basis of this study on Xenopus laevis, we conclude that SNAP-25 (i) plays a substantial role in the secretion of a wide variety of neuronal messengers; (ii) functions in the central nervous system but also in neurohormonal and endocrine systems; (iii) acts at the plasma membrane but possibly also at the membrane of synaptic vesicles and peptide-containing secretory granules; (iv) acts not only locally (as in synapses), but at various sites of the plasma membrane (as in the endocrine melanotrope cell); and (v) can be upregulated in its expression by physiological stimuli that increase the extent of the molecular machinery involved in exocytosis.

摘要

在哺乳动物中,25 kDa的突触体相关蛋白SNAP - 25通常被认为在神经元信使的突触外排中发挥作用。我们使用针对大鼠SNAP - 25的多克隆抗血清,通过蛋白质免疫印迹法和免疫细胞化学方法,证明了南非爪蟾非洲爪蟾大脑中存在一种类似SNAP - 25的蛋白。非洲爪蟾的SNAP - 25在整个大脑中普遍存在,并描述了其在各种已识别的神经元胞体和轴突束中的分布情况。蛋白质免疫印迹分析和免疫细胞化学还证明了垂体神经叶、中间叶和远侧叶中存在SNAP - 25。对分离的促黑素细胞进行共聚焦激光扫描显微镜图像的强度线图分析表明,SNAP - 25在粗面内质网和高尔基体中产生和加工,并与质膜相关联。免疫电子显微镜证实了SNAP - 25存在于质膜中的观点,同时也显示在神经叶的神经血轴突终末和中间叶的内分泌促黑素细胞中,SNAP - 25与含肽分泌颗粒的界膜紧密相关。定量蛋白质免疫印迹显示,使非洲爪蟾适应黑暗背景对神经叶和促黑素细胞中SNAP - 25的表达有明显的刺激作用。通过对适应黑色背景的蟾蜍的单个促黑素细胞进行共聚焦激光扫描显微镜检查,记录到免疫荧光增加,证实了这种背景光强度依赖性的SNAP - 25表达刺激。基于对非洲爪蟾的这项研究,我们得出结论:SNAP - 25(i)在多种神经元信使的分泌中起重要作用;(ii)在中枢神经系统以及神经激素和内分泌系统中发挥作用;(iii)作用于质膜,但也可能作用于突触小泡和含肽分泌颗粒的膜;(iv)不仅在局部(如在突触中)起作用,而且在质膜的各个部位(如在内分泌促黑素细胞中)起作用;(v)其表达可通过增加参与胞吐作用的分子机制程度的生理刺激而上调。

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