首页> 外文期刊>American Journal of Physiology >Activity and protein localization of multiple glutamate transporters in gestation day 14 vs. day 20 rat placenta.
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Activity and protein localization of multiple glutamate transporters in gestation day 14 vs. day 20 rat placenta.

机译:在第14天与第20天大鼠胎盘中,多种谷氨酸转运蛋白的活性和蛋白质定位。

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摘要

Concentrative absorption of glutamate by the developing placenta is critical for proper fetal development. The expression of GLAST1, GLT1, EAAC1, and EAAT4, known to be capable of D-aspartate-inhibitable and Na(+)-coupled glutamate transport (system X-AG), was evaluated in day 14 vs. day 20 rat chorioallantoic placenta. Steady-state mRNA levels were greater at day 20 for all transporters. Immunohistochemistry determined that the expression of GLAST1, GLT1, and EAAC1 was greater throughout the day 20 placenta and was asymmetric with respect to cellular localization. EAAT4 protein was not detected. System X-AG activity was responsible for most of the Na(+)-dependent glutamate uptake and was greater in day 20 than in day 14 apical and basal membrane subdomains of the labyrinth syncytiotrophoblast. Greater quantities of EAAC1 and GLAST1 protein were identified on day 20, and quantities were greater in basal than in apical membranes. GLT1 expression, unchanged in apical membranes, was decreased in basal membranes. These data correlate transporter mRNA and protein content with transport activity and demonstrate an increasing capacity for glutamate absorption by the developing placenta.
机译:发育中的胎盘集中吸收谷氨酸对胎儿的正常发育至关重要。第14天与第20天大鼠绒毛膜尿囊胎盘评估了GLAST1,GLT1,EAAC1和EAAT4的表达,已知它们能够D-天冬氨酸抑制和Na(+)偶联的谷氨酸转运(系统X-AG)。 。所有转运蛋白在第20天的稳态mRNA水平都较高。免疫组织化学确定,在整个第20天的胎盘中,GLAST1,GLT1和EAAC1的表达更高,并且在细胞定位方面不对称。未检测到EAAT4蛋白。系统X-AG活性是大多数Na(+)依赖的谷氨酸摄取的原因,并且在第20天比迷宫式合体滋养层细胞的第14天顶和基底膜亚域更大。在第20天鉴定出更多的EAAC1和GLAST1蛋白,并且基底膜中的量大于顶膜中的量。在顶膜中未改变的GLT1表达在基底膜中降低。这些数据将转运蛋白的mRNA和蛋白质含量与转运活性相关联,并证明发育中的胎盘吸收谷氨酸的能力增加。

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