首页> 外文期刊>American Journal of Physiology >System beta and system A amino acid transporters in the feline endotheliochorial placenta.
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System beta and system A amino acid transporters in the feline endotheliochorial placenta.

机译:系统β和系统A氨基酸在猫内皮细胞胎盘中的转运蛋白。

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摘要

There is no knowledge of the transport mechanisms by which solutes cross the cat placenta or any other endotheliochorial placenta. Here, we investigated whether the amino acid transport systems beta and A are present in the cat placenta using a placental fragment uptake technique. Data were compared with studies in the human placenta, in which the presence of these two transport systems has been well established. A time course of [(3)H]taurine (substrate for system beta) and [(14)C]MeAIB (nonmetabolizable substrate for system A) uptake was determined in the term cat and human placental fragments in the presence and absence (choline substituted) of Na(+), and further studies were carried out over 15 min. Taurine uptake into both cat and human placenta fragments was found to be Na(+) and Cl(-) dependent, and Na(+)-dependent taurine uptake was blocked by excess beta-alanine. MeAIB uptake was found to be Na(+) dependent, and Na(+)-dependent MeAIB uptake was blocked by excess MeAIB or glycine. Western blotting and immunohistochemistry performed on cat and human placenta showed expression of TAUT and ATA2 (SNAT2), proteins associated with system beta and system A activity, respectively. This study therefore provides the first evidence of the presence of amino acid transport systems beta and A in the cat placenta.
机译:目前尚不知道溶质穿过猫胎盘或任何其他内皮膜上膜胎盘的转运机制。在这里,我们调查了胎盘碎片摄取技术在猫胎盘中是否存在氨基酸转运系统β和A。将数据与人类胎盘的研究进行了比较,在人类胎盘中,这两种转运系统的存在已得到充分证实。在存在和不存在(胆碱)的条件下,确定术语猫和人胎盘碎片中[[3] H]牛磺酸(系统β的底物)和[[14] C] MeAIB(系统A的不可代谢的底物)的吸收时间。 Na(+)取代),并在15分钟内进行了进一步的研究。发现猫和人类胎盘碎片中的牛磺酸摄取都是Na(+)和Cl(-)依赖性的,而Na(+)依赖性牛磺酸的摄取被过量的β-丙氨酸所阻断。发现MeAIB摄取是Na(+)依赖的,而Na(+)依赖的MeAIB摄取被过量的MeAIB或甘氨酸阻断。在猫和人胎盘上进行的蛋白质印迹和免疫组织化学分析分别显示了TAUT和ATA2(SNAT2)的表达,这些蛋白分别与系统β和系统A活性相关。因此,这项研究提供了猫胎盘中氨基酸转运系统β和A的第一个证据。

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