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[人胎盘滋养层微绒毛膜囊泡中L-谷氨酸转运机制的研究]

[Studies on L-glutamate transport mechanism in human placental trophoblast microvilli membrane vesicles].

作者信息

Iioka H, Moriyama I, Kyuma M, Ito K, Amasaki M, Ichijo M

出版信息

Nihon Sanka Fujinka Gakkai Zasshi. 1985 Feb;37(2):207-12.

PMID:3973444
Abstract

The uptake of L-glutamate in brush border (microvilli) vesicles prepared from human term placenta was studied using the rapid filtration technique. The uptake of L-glutamate into the vesicles occurred osmotically, and preincubation with L-glutamate increased the uptake of amino acid. These findings indicate that the uptake of L-glutamate by placental trophoblast brush border membranes represents the transport into membrane vesicles. A Na+ electrochemical gradient (extravesicular greater than intravesicular) stimulated the initial rate of L-glutamate uptake about three times. The initial rate of transport exhibited saturation kinetics with respect to the L-glutamate concentration; an apparent Km of 0.15 mM and V max of 70 pmol/mg protein in 20 seconds were calculated. The uptake of L-glutamate into the vesicles was competitively inhibited by L-glutamate and L-cysteate (acidic amino acid). These results indicate that a Na-dependent acidic amino acid specific transport system exists in the placental trophoblast microvilli membrane. These results indicate that the transport of L-glutamate across the placental microvilli membrane is sodium-dependent and carrier mediated.

摘要

采用快速过滤技术研究了从足月人胎盘制备的刷状缘(微绒毛)小泡对L-谷氨酸的摄取。L-谷氨酸向小泡内的摄取是通过渗透作用发生的,并且用L-谷氨酸预孵育会增加氨基酸的摄取。这些发现表明,胎盘滋养层刷状缘膜对L-谷氨酸的摄取代表了其向膜小泡内的转运。Na⁺电化学梯度(囊泡外大于囊泡内)使L-谷氨酸摄取的初始速率提高了约三倍。转运的初始速率相对于L-谷氨酸浓度呈现饱和动力学;计算得出在20秒内表观Km为0.15 mM,Vmax为70 pmol/mg蛋白质。L-谷氨酸和L-半胱氨酸盐(酸性氨基酸)竞争性抑制L-谷氨酸向小泡内的摄取。这些结果表明,胎盘滋养层微绒毛膜中存在一种依赖Na⁺的酸性氨基酸特异性转运系统。这些结果表明,L-谷氨酸跨胎盘微绒毛膜的转运是依赖钠且由载体介导的。

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