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脑发育过程中 SVCT2 在顶端放射状胶质细胞和祖细胞中的顶端极化。

Apical Polarization of SVCT2 in Apical Radial Glial Cells and Progenitors During Brain Development.

机构信息

Center for Advanced Microscopy CMA BIO-BIO, Concepcion University, Concepcion, Chile.

Department of Cell Biology, Concepcion University, Concepcion, Chile.

出版信息

Mol Neurobiol. 2017 Sep;54(7):5449-5467. doi: 10.1007/s12035-016-0081-2. Epub 2016 Sep 5.

Abstract

During brain development, radial glial (RG) cells and the different progenitor subtypes are characterized by their bipolar morphology that includes an ovoid cell body and one or two radial processes that span across the developing cerebral wall. Different cells transport the reduced form of vitamin C, ascorbic acid (AA), using sodium-dependent ascorbic acid cotransporters (SVCT1 or SVCT2). SVCT2 is mainly expressed in the nervous system (CNS); however, its localization in the central nervous system during embryonic development along with the mechanism by which RG take up vitamin C and its intracellular effects is unknown. Thus, we sought to determine the expression and localization of SVCT2 during CNS development. SVCT2 is preferentially localized in the RG body at the ventricular edge of the cortex during the neurogenic stage (E12 to E17). The localization of SVCT2 overexpressed by in utero electroporation of E14 embryos is consistent with ventricular polarization. A similar distribution pattern was observed in human brain tissue sections at 9 weeks of gestation; however, SVCT2 immunoreaction was also detected in the inner and outer subventricular zone (SVZ). Finally, we used C17.2 neural stem cell line, J1ES cells and primary cell cultures derived from the brain cortex to analyze functional SVCT2 activity, AA effects in progenitor cells bipolar morphology, and SVCT2 expression levels in different culture conditions. Our results indicate that basal RG cells and apical intermediate and subapical progenitors are the main cell types expressing SVCT2 in the lissencephalic brain. SVCT2 was mainly detected in the apical region of the ventricular zone cells, contacting the cerebrospinal fluid. In gyrencephalic brains, SVCT2 was also detected in progenitor cells located in the inner and outer SVZ. Finally, we defined that AA has a strong radializing (bipolar morphology) effect in progenitor cells in culture and the differentiation condition modulates SVCT2 expression.

摘要

在大脑发育过程中,放射状胶质(RG)细胞和不同的祖细胞亚型以其双极形态为特征,包括卵圆形细胞体和跨越发育中的脑壁的一个或两个放射状突起。不同的细胞使用依赖钠的抗坏血酸协同转运蛋白(SVCT1 或 SVCT2)来运输维生素 C 的还原形式抗坏血酸(AA)。SVCT2 主要在神经系统(CNS)中表达;然而,其在胚胎发育过程中在中枢神经系统中的定位以及 RG 摄取维生素 C 的机制及其细胞内作用尚不清楚。因此,我们试图确定 SVCT2 在中枢神经系统发育过程中的表达和定位。SVCT2 在神经发生阶段(E12 至 E17)优先定位于皮质脑室边缘的 RG 体中。通过对 E14 胚胎进行体内电穿孔过表达的 SVCT2 定位与脑室极化一致。在 9 周龄的人脑组织切片中观察到类似的分布模式;然而,SVCT2 免疫反应也在内外侧室下区(SVZ)中检测到。最后,我们使用 C17.2 神经干细胞系、J1ES 细胞和源自大脑皮层的原代细胞培养物来分析功能性 SVCT2 活性、AA 对祖细胞双极形态的影响以及不同培养条件下 SVCT2 的表达水平。我们的结果表明,基础 RG 细胞和顶端中间和亚顶祖细胞是在无脑回脑中转录 SVCT2 的主要细胞类型。SVCT2 主要在脑室区细胞的顶端区域检测到,与脑脊液接触。在脑回形成的大脑中,SVCT2 也在位于内、外侧 SVZ 的祖细胞中检测到。最后,我们确定 AA 在培养中的祖细胞中具有很强的放射状(双极形态)作用,分化条件调节 SVCT2 的表达。

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