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Ectopic transgene expression in the retina of four transgenic mouse lines

机译:四种转基因小鼠品系视网膜中异位转基因表达

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Retinal expression of transgenes was examined in four mouse lines. Two constructs were driven by the choline acetyltransferase (ChAT) promoter: green fluorescent protein conjugated to tau protein (tau-GFP) or cytosolic yellow fluorescent protein (YFP) generated through CRE recombinase-induced expression of Rosa26 (ChAT-CRE/Rosa26YFP). Two other constructs targeted inhibitory interneurons: GABAergic horizontal and amacrine cells identified by glutamic acid decarboxylase (GAD65-GFP) or parvalbumin (PV) cells (PV-CRE/Rosa26YFP). Animals were transcardially perfused and retinal sections prepared. Antibodies against PV, calretinin (CALR), calbindin (CALB), and tyrosine hydroxylase (TH) were used to counterstain transgene-expressing cells. In PVxRosa and ChAT-tauGFP constructs, staining appeared in vertically oriented row of processes resembling Muller cells. In the ChATxRosa construct, populations of amacrine cells and neurons in the ganglion cell layer were labeled. Some cones also exhibited GFP fluorescence. CALR, PV and TH were found in none of these cells. Occasionally, we found GFP/CALR and GFP/PV double-stained cells in the ganglion cell layer (GCL). In the GAD65-GFP construct, all layers of the neuroretina were labeled, except photoreceptors. Not all horizontal cells expressed GFP. We did not find GFP/TH double-labeled cells and GFP was rarely present in CALR- and CALB-containing cells. Many PV-positive neurons were also labeled for GFP, including small diameter amacrines. In the GCL, single labeling for GFP and PV was ascertained, as well as several CALR/PV double-stained neurons. In the GCL, cells triple labeled with GFP/CALR/CALB were sparse. In conclusion, only one of the four transgenic constructs exhibited an expression pattern consistent with endogenous retinal protein expression, while the others strongly suggested ectopic gene expression.
机译:在四个小鼠系中检查了转基因的视网膜表达。胆碱乙酰基转移酶(ChAT)启动子驱动两个构建体:与tau蛋白偶联的绿色荧光蛋白(tau-GFP)或通过CRE重组酶诱导的Rosa26表达(ChAT-CRE / Rosa26YFP)生成的胞质黄色荧光蛋白(YFP)。另两种构建体靶向抑制性中间神经元:通过谷氨酸脱羧酶(GAD65-GFP)或小白蛋白(PV)细胞(PV-CRE / Rosa26YFP)鉴定的GABA能水平和无长突细胞。对动物进行心脏灌注,并准备视网膜切片。针对PV,钙网蛋白(CALR),钙结合蛋白(CALB)和酪氨酸羟化酶(TH)的抗体用于对转基因表达细胞进行复染。在PVxRosa和ChAT-tauGFP构建体中,染色在类似于Muller细胞的垂直方向的过程行中出现。在ChATxRosa构建体中,标记了神经节细胞层中无长突细胞和神经元的种群。一些视锥细胞还显示出GFP荧光。在这些细胞中均未发现CALR,PV和TH。有时,我们在神经节细胞层(GCL)中发现GFP / CALR和GFP / PV双染色细胞。在GAD65-GFP构建体中,除感光器外,所有神经视网膜的层均已标记。并非所有水平细胞都表达GFP。我们没有发现GFP / TH双标记的细胞,并且在包含CALR和CALB的细胞中很少出现GFP。许多PV阳性神经元也被标记为GFP,包括小直径无长突蛋白。在GCL中,确定了GFP和PV的单一标记,以及几个CALR / PV双重染色的神经元。在GCL中,用GFP / CALR / CALB三重标记的细胞稀疏。总之,四个转基因构建体中只有一个表现出与内源性视网膜蛋白表达一致的表达模式,而其他则强烈建议异位基因表达。

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