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锌转运体3(ZnT3)在小鼠大脑中的发育表达:囊泡锌转运蛋白与可螯合囊泡锌(CVZ)细胞之间的相关性。神经胶质细胞和神经元CVZ细胞相互作用。

Developmental expression of ZnT3 in mouse brain: correlation between the vesicular zinc transporter protein and chelatable vesicular zinc (CVZ) cells. Glial and neuronal CVZ cells interact.

作者信息

Valente Tony, Auladell Carme

机构信息

Departament de Biologia Cel.lular, Universitat de Barcelona, E-08028 Barcelona, Spain.

出版信息

Mol Cell Neurosci. 2002 Oct;21(2):189-204. doi: 10.1006/mcne.2002.1159.

Abstract

We examine the expression pattern of ZnT3 in the cerebral and cerebellar areas of mouse brain throughout development. During embryogenesis and early postnatal stages, ZnT3 transcripts were detected in several areas. Label was clear in areas related to proliferation and differentiation. As development proceeded, the label gradually disappeared in these areas and increased in the chelatable vesicular zinc (CVZ) system. To assess whether ZnT3 was expressed in all CVZ cells, its distribution pattern was studied through postnatal stages using a retrograde zinc transport method. While the ZnT3 expression pattern and the distribution of CVZ cells coincided from P12 to adulthood, this coincidence was not detected in early postnatal days. Moreover, immunohistochemical procedures highlighted a differential phenotype within CVZ cells throughout postnatal development. These findings suggest the presence of different CVZ cell subpopulations throughout brain development and, consequently, the existence of distinct chelatable vesicular zinc pools.

摘要

我们研究了整个发育过程中小鼠大脑的大脑和小脑区域中锌转运体3(ZnT3)的表达模式。在胚胎发生和出生后早期阶段,在几个区域检测到了ZnT3转录本。在与增殖和分化相关的区域中标记清晰。随着发育的进行,这些区域的标记逐渐消失,而在可螯合囊泡锌(CVZ)系统中增加。为了评估ZnT3是否在所有CVZ细胞中表达,使用逆行锌转运方法在出生后阶段研究了其分布模式。虽然从出生后第12天到成年期,ZnT3的表达模式与CVZ细胞的分布一致,但在出生后早期未检测到这种一致性。此外,免疫组织化学方法突出了出生后发育过程中CVZ细胞内的不同表型。这些发现表明在整个大脑发育过程中存在不同的CVZ细胞亚群,因此存在不同的可螯合囊泡锌池。

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