Van Winkle L J, Mann D F, Campione A L, Farrington B H
Department of Biochemistry, Chicago College of Osteopathic Medicine, Downers Grove, IL 60515.
Biochim Biophys Acta. 1990 Sep 7;1027(3):268-77. doi: 10.1016/0005-2736(90)90318-i.
We have studied transport of L-tryptophan, L-tyrosine and L-phenylalanine as factors contributing to homeostasis of these amino acids in preimplantation mouse conceptuses. Benzenoid amino acids were transported by the Na(+)-independent systems L and b0,+ in 1-cell conceptuses, and by these systems plus the Na(+)-dependent systems B0,+ and B in blastocysts. In addition, a component of Na(+)-independent tryptophan, tyrosine and phenylalanine transport in 1-cell and 2-cell conceptuses and in blastocysts resisted inhibition by L-leucine. The latter component of transport not only preferred benzenoid amino acids and in particular tryptophan as substrates, but it also was inhibited strongly and competitively by alpha-N-methyl-L-tryptophan. The leucine-resistant component of tryptophan transport also was inhibited strongly by N-ethylmaleimide and D-tryptophan, and it appeared to be inhibited weakly by 3-amino-endo-bicyclo[3.2.1]octane-3-carboxylic acid (BCO) but not by other amino acids tested as inhibitors. By these criteria, the leucine-resistant component of transport of benzenoid amino acids resembled system T in human red blood cells and rat hepatocytes. It is not entirely clear why preimplantation blastocysts have five good systems for transport of tryptophan. It is possible, however, that tryptophan homeostasis is particularly important during preimplantation development since it has been shown elsewhere that tryptophan availability in blood increases within one day after rat eggs are fertilized.
我们研究了L-色氨酸、L-酪氨酸和L-苯丙氨酸的转运,它们是着床前小鼠胚胎中这些氨基酸稳态的影响因素。苯环氨基酸在单细胞胚胎中通过非Na⁺依赖性系统L和b0,+进行转运,而在囊胚中则通过这些系统以及Na⁺依赖性系统B0,+和B进行转运。此外,在单细胞和二细胞胚胎以及囊胚中,非Na⁺依赖性色氨酸、酪氨酸和苯丙氨酸转运的一个成分对L-亮氨酸的抑制具有抗性。转运的后一成分不仅优先选择苯环氨基酸尤其是色氨酸作为底物,而且还受到α-N-甲基-L-色氨酸的强烈竞争性抑制。色氨酸转运的亮氨酸抗性成分也受到N-乙基马来酰亚胺和D-色氨酸的强烈抑制,并且似乎受到3-氨基-内-双环[3.2.1]辛烷-3-羧酸(BCO)的微弱抑制,但不受测试的其他氨基酸抑制剂的抑制。根据这些标准,苯环氨基酸转运的亮氨酸抗性成分类似于人类红细胞和大鼠肝细胞中的系统T。目前尚不完全清楚为什么着床前囊胚有五种良好的色氨酸转运系统。然而,有可能在着床前发育过程中色氨酸稳态特别重要,因为其他地方已经表明,大鼠卵子受精后一天内血液中的色氨酸可用性会增加。