首页> 外文期刊>American Journal of Physiology >Single cell RT-PCR analysis of ClC-2 mRNA expression in ureteric bud tip.
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Single cell RT-PCR analysis of ClC-2 mRNA expression in ureteric bud tip.

机译:输尿管芽尖ClC-2 mRNA表达的单细胞RT-PCR分析。

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摘要

Embryonic epithelia at the tip of the ureteric bud (UB) face the interspace between epithelial and mesenchymal cells and are fundamentally involved in reciprocal signaling during early nephrogenesis. To characterize their membrane conductive proteins, patch-clamp and single cell RT-PCR techniques were applied to embryonic rat UBs [embryonic day 17 (day E17)] microdissected from the outer cortex. Cells at the UB tip had a high whole cell conductance (14 +/- 2 nS/10 pF, n = 8). The main fractional conductance resembled that of Ca-activated Cl channels in nonepithelial cells, with its time-dependent activation at depolarizing and inactivation at hyperpolarizing voltages. A second Cl-selective current fraction, by contrast, activated slowly during strong hyperpolarization, suggestive of a ClC-2-mediated conductance. To determine the origin of this current, cytoplasm was harvested into the patch pipette, RNA was reverse transcribed, and cDNA encoding the glyceraldehyde-3-phosphate dehydrogenase (GAPDH) housekeeper gene or the ClC-2 Cl channel was amplified by polymerase chain reaction (PCR). GAPDH and ClC-2 PCR products were identified in 23 and 8 (out of a total of 57) single cell cDNA samples, respectively. ClC-2 PCR products with two different lengths were obtained, which might be due to two alternatively spliced ClC-2 mRNA isoforms. This first and combined approach by patch-clamp and single cell RT-PCR techniques to embryonic epithelia indicates that 1) cells at the UB tip express a phenotype remarkably different from that of postembryonic collecting duct principal cells and that 2) ClC-2 is likely to have a key role in early nephrogenesis.
机译:输尿管芽(UB)尖端的胚胎上皮面对上皮细胞与间充质细胞之间的间隙,并在早期肾生成过程中基本参与相互的信号传导。为了表征其膜传导蛋白,将膜片钳和单细胞RT-PCR技术应用于从外皮层显微解剖的胚胎大鼠UB [胚胎第17天(E17天)]。 UB尖端的细胞具有较高的全细胞电导率(14 +/- 2 nS / 10 pF,n = 8)。主要分数电导类似于非上皮细胞中Ca激活的Cl通道的电导,在去极化时具有时间依赖性激活,而在超极化电压下则具有失活。相比之下,第二个Cl选择性电流部分在强烈的超极化过程中缓慢激活,暗示了ClC-2介导的电导。为了确定这种电流的起源,将细胞质收集到贴片移液器中,对RNA进行逆转录,并通过聚合酶链反应扩增编码3-磷酸甘油醛脱氢酶(GAPDH)管家基因或ClC-2 Cl通道的cDNA( PCR)。 GAPDH和ClC-2 PCR产物分别在23个和8个(总共57个)单细胞cDNA样品中鉴定。获得了具有两个不同长度的ClC-2 PCR产物,这可能是由于两个交替剪接的ClC-2 mRNA同工型所致。通过膜片钳和单细胞RT-PCR技术对胚胎上皮细胞进行的第一种结合方法表明,1)UB尖端的细胞表达的表型与胚胎后集管主细胞的显着不同,并且2)ClC-2很可能在早期肾生成中起关键作用。

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