Campa M J, Kilberg M S
Department of Biochemistry and Molecular Biology, J. Hillis Miller Health Center, University of Florida, Gainesville 32610.
J Cell Physiol. 1989 Dec;141(3):645-52. doi: 10.1002/jcp.1041410324.
Amino acid transport was characterized in stage 6 Xenopus laevis oocytes. Most amino acids were taken up by the oocytes by way of both Na+-dependent and saturable Na+-independent processes. Na+-dependent transport of 2-aminoisobutyric acid (AIB) was insensitive to cis- or trans-inhibition by the System A-defining substrate 2-(methylamino)-isobutyric acid (MeAIB), although threonine, leucine, and histidine were found to be effective inhibitors, eliminating greater than 80% of Na+-dependent AIB uptake. Lack of inhibition by arginine eliminates possible mediation by System Bo,+ and suggests uptake by System ASC. The Na+-dependent transport of characteristic System ASC substrates such as alanine, serine, cysteine, and threonine was also insensitive to excess MeAIB. Evidence to support the presence of System Bo,+ was obtained through inhibition analysis of Na+-dependent arginine transport as well arginine inhibition of Na+-dependent threonine uptake. The Na+-independent transport of leucine was subject to trans-stimulation and was inhibited by the presence of excess phenylalanine, histidine, and, to a lesser extent, 2-amino-(2,2,1)-bicycloheptane-2-carboxylic acid (BCH). These observations are consistent with mediation by System L. The characteristics of Na+-independent uptake of threonine are not consistent with assignment to System L, and appear to be reflective of Systems asc and bo,+. In its charged state, histidine appears to be transported by a carrier similar in its specificity to System y+, but is taken up by System L when present as a zwitterion.
对非洲爪蟾第6期卵母细胞中的氨基酸转运进行了表征。大多数氨基酸通过依赖于钠和可饱和的非依赖于钠的过程被卵母细胞摄取。2-氨基异丁酸(AIB)的依赖于钠的转运对系统A的定义底物2-(甲基氨基)异丁酸(MeAIB)的顺式或反式抑制不敏感,尽管发现苏氨酸、亮氨酸和组氨酸是有效的抑制剂,可消除超过80%的依赖于钠的AIB摄取。精氨酸缺乏抑制作用排除了系统Bo,+的可能介导作用,并提示通过系统ASC摄取。丙氨酸、丝氨酸、半胱氨酸和苏氨酸等典型系统ASC底物的依赖于钠的转运对过量的MeAIB也不敏感。通过对依赖于钠的精氨酸转运的抑制分析以及精氨酸对依赖于钠的苏氨酸摄取的抑制作用,获得了支持系统Bo,+存在的证据。亮氨酸的非依赖于钠的转运受到反式刺激,并受到过量苯丙氨酸、组氨酸以及程度较轻的2-氨基-(2,2,1)-双环庚烷-2-羧酸(BCH)的抑制。这些观察结果与系统L的介导作用一致。苏氨酸非依赖于钠的摄取特征与系统L的归属不一致,似乎反映了系统asc和bo,+。在其带电状态下,组氨酸似乎由一种特异性与系统y+相似的载体转运,但当以两性离子形式存在时则由系统L摄取。