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人胎盘微绒毛膜的中性氨基酸转运系统

Neutral amino acid transport systems of microvillous membrane of human placenta.

作者信息

Johnson L W, Smith C H

机构信息

Edward Mallinckrodt Department of Pediatrics, Washington University School of Medicine, Children's Hospital, St. Louis, Missouri 63110.

出版信息

Am J Physiol. 1988 Jun;254(6 Pt 1):C773-80. doi: 10.1152/ajpcell.1988.254.6.C773.

Abstract

Placental transport produces concentrations of amino acids in fetal blood greater than those of maternal blood. Competitive inhibition studies of zwitterionic amino acid transport in isolated vesicles from the microvillous (maternal facing) plasma membranes of syncytiotrophoblast defined three transport systems: 1) a sodium-dependent system that supports methylaminoisobutyric acid (MeAIB) transport and has the characteristics of an A system; 2) a sodium-independent system with a high affinity for leucine and other amino acids with branched or aromatic side chains; and 3) a sodium-independent system with a preference for alanine as a substrate. The two sodium-independent systems could be further discriminated by marked specificity for trans stimulation with alanine or with leucine. System ASC, known to be present in whole placenta, and the neutral brush-border or imino systems of other polarized epithelia were apparently absent. Kinetic characteristics of the A system make it the probable primary driving force for concentrative transfer of its substrate amino acids to the fetus. Characteristics of the high-affinity leucine system demonstrated that it is saturated by normal serum leucine concentrations. Regulation of either system has the potential to alter placental amino acid uptake and transfer to the fetus.

摘要

胎盘转运使胎儿血液中的氨基酸浓度高于母体血液中的氨基酸浓度。对合体滋养层微绒毛(面向母体)质膜分离囊泡中两性离子氨基酸转运的竞争性抑制研究确定了三种转运系统:1)一种依赖钠的系统,支持甲基氨基异丁酸(MeAIB)转运,具有A系统的特征;2)一种不依赖钠的系统,对亮氨酸和其他具有支链或芳香侧链的氨基酸具有高亲和力;3)一种不依赖钠的系统,优先选择丙氨酸作为底物。这两种不依赖钠的系统可以通过对丙氨酸或亮氨酸反式刺激的显著特异性进一步区分。已知存在于整个胎盘中的系统ASC以及其他极化上皮细胞的中性刷状缘或亚氨基系统显然不存在。A系统的动力学特征使其可能成为其底物氨基酸向胎儿进行浓缩转运的主要驱动力。高亲和力亮氨酸系统的特征表明,它会被正常血清亮氨酸浓度饱和。任何一个系统的调节都有可能改变胎盘氨基酸的摄取和向胎儿的转运。

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