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首页> 外文期刊>American Journal of Physiology >Characterization of a murine renal distal convoluted tubule cell line for the study of transcellular calcium transport.
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Characterization of a murine renal distal convoluted tubule cell line for the study of transcellular calcium transport.

机译:鼠肾远曲小管细胞系的特性,用于研究跨细胞钙转运。

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摘要

To unravel the molecular regulation of renal transcellular Ca(2+) transport, a murine distal convoluted tubule (mpkDCT) cell line derived from distal convoluted tubules (DCT) microdissected from a SV-PK/Tag transgenic mouse was characterized. This cell line originated from DCT only, as mRNA encoding for the DCT marker thiazide-sensitive Na(+)/Cl(-) cotransporter was expressed, whereas mRNA encoding for the connecting tubule and collecting duct marker aquaporin-2 was not detected, as determined by reverse-transcriptase PCR. mpkDCT cells expressed mRNA encoding the Ca(2+) channels TRPV5 and TRPV6 and other key players necessary for transcellular Ca(2+) transport, i.e., calbindin-D(9k), calbindin-D(28k), plasma membrane Ca(2+)-ATPase isoform 1b, and Na(+)/Ca(2+) exchanger 1. Primary cultures of DCT cells exhibited net transcellular Ca(2+) transport of 0.4 +/- 0.1 nmol.h(-1).cm(-2), whereas net transcellular Ca(2+) transport across mpkDCT cells was significantly higher at 2.4 +/- 0.4 nmol.h(-1).cm(-2). Transcellular Ca(2+) transport across mpkDCT cells was completely inhibited by ruthenium red, an inhibitor of TRPV5 and TRPV6, but not by the voltage-operated Ca(2+) channel inhibitors felodipine and verapamil. With the use of patch-clamp analysis, the IC(50) of ruthenium red on Na(+) currents was between the values measured for TRPV5- and TRPV6-expressing HEK 293 cells, suggesting that TRPV5 and/or TRPV6 is possibly active in mpkDCT cells. Forskolin in combination with IBMX, 1,25-dihydroxyvitamin D(3), and 1-deamino-8-d-arginine vasopressin increased transcellular Ca(2+) transport, whereas PMA and parathyroid hormone had no significant effect. In conclusion, the murine mpkDCT cell line provides a unique cell model in which to study the molecular regulation of transcellular Ca(2+) transport in the kidney in vitro.
机译:为了揭示肾脏跨细胞Ca(2+)转运的分子调控,特征是从SV-PK / Tag转基因小鼠显微解剖的远曲小管(DCT)衍生的鼠远曲小管(mpkDCT)细胞系。该细胞系仅起源于DCT,因为表达了编码DCT标记的噻嗪类敏感性Na(+)/ Cl(-)共转运蛋白的mRNA,而未检测到编码连接小管和收集导管标记aquaporin-2的mRNA,因为通过逆转录酶PCR确定。 mpkDCT细胞表达的mRNA编码Ca(2+)通道TRPV5和TRPV6和其他关键参与者,对于跨细胞Ca(2+)转运来说是必需的,即,calbindin-D(9k),calbindin-D(28k),质膜Ca(2 +)-ATPase亚型1b,和Na(+)/ Ca(2+)交换剂1。DCT细胞的主要培养物表现出0.4 +/- 0.1 nmol.h(-1).cm的净跨细胞Ca(2+)转运。 (-2),而跨mpkDCT细胞的净跨细胞Ca(2+)转运则明显更高,为2.4 +/- 0.4 nmol.h(-1).cm(-2)。跨mpkDCT细胞的跨细胞Ca(2+)运输被钌红完全抑制,钌红是TRPV5和TRPV6的抑制剂,而不是电压操作的Ca(2+)通道抑制剂非洛地平和维拉帕米。通过使用膜片钳分析,钌红在Na(+)电流上的IC(50)在表达TRPV5和TRPV6的HEK 293细胞的测量值之间,表明TRPV5和/或TRPV6可能在mpkDCT细胞。 Forskolin与IBMX,1,25-二羟基维生素D(3)和1-deamino-8-d-精氨酸加压素的组合增加了跨细胞Ca(2+)的运输,而PMA和甲状旁腺激素没有明显的作用。总之,鼠mpkDCT细胞系提供了一个独特的细胞模型,用于研究体外肾脏中跨细胞Ca(2+)转运的分子调控。

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