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着床前小鼠胚胎中系统B0,+及两性离子氨基酸的广泛范围钠离子依赖性转运体的发育。

Development of system B0,+ and a broad-scope Na(+)-dependent transporter of zwitterionic amino acids in preimplantation mouse conceptuses.

作者信息

Van Winkle L J, Campione A L, Farrington B H

机构信息

Department of Biochemistry, Chicago College of Osteopathic Medicine, Downers Grove, IL 60515.

出版信息

Biochim Biophys Acta. 1990 Jun 27;1025(2):225-33. doi: 10.1016/0005-2736(90)90101-s.

Abstract

The nature and ontogeny of Na(+)-dependent L-alanine transport was examined in mouse eggs and preimplantation conceptuses. Mediated L-alanine uptake was not detected in fertilized or unfertilized eggs, but a small amount of Na(+)-dependent L-alanine transport was detected in 2-cell conceptuses. Na(+)-dependent alanine transport was more rapid at the 8-cell stage of development, and more than 10-fold faster in blastocysts than in 8-cell conceptuses. Analog inhibition analyses were consistent with the interpretation that L-lysine-sensitive and L-lysine-resistant components of transport were present at the 2-cell, 8-cell and blastocyst stages of development. The range of amino acids and their analogs that inhibited the most conspicuous component of alanine transport in blastocysts was consistent with the conclusion that system B0,+ is largely responsible for L-alanine uptake in these conceptuses. Moreover, system B0,+, but not other known systems in blastocysts, became susceptible to activation as these conceptuses approached the time of implantation, so this activation could be involved in implantation. Although the data are consistent with the possibility that system B0,+ is also present in 2-cell and 8-cell conceptuses, the relatively slow L-alanine transport in conceptuses at these earlier stages of development precluded more detailed study of their ability to take up alanine. Similarly, the less conspicuous L-lysine-resistant component of L-alanine transport in blastocysts also may be present in conceptuses as early as the 2-cell stage. The L-lysine-resistant component of L-alanine transport could not be attributed to residual system B0,+ activity, however, because it was inhibited more strongly by trans-OH-L-proline than L-arginine, whereas the reverse was the case for system B0,+. Similarly, L-tryptophan and L-leucine each inhibited system B0,+ more strongly than L-serine or L-cysteine, whereas all four of these amino acids inhibited the L-lysine-resistant component equally well. Moreover, a Hofstee plot for L-alanine influx was consistent with the interpretation that at least two mediated components of Na(+)-dependent L-alanine transport are present in blastocysts. The less conspicuous component of L-alanine transport in blastocysts was relatively susceptible to inhibition by L-leucine and L-tryptophan, but it resisted inhibition by the 'model' system A substrate, MeAIB, and the system ASC inhibitors, L-penicillamine and cationic amino acids.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

研究了小鼠卵子和植入前胚胎中Na⁺依赖性L-丙氨酸转运的性质和个体发生。在受精卵或未受精卵中未检测到介导的L-丙氨酸摄取,但在2细胞胚胎中检测到少量Na⁺依赖性L-丙氨酸转运。在发育的8细胞阶段,Na⁺依赖性丙氨酸转运更快,在囊胚中的转运速度比8细胞胚胎快10倍以上。类似物抑制分析与以下解释一致:在发育的2细胞、8细胞和囊胚阶段存在转运的L-赖氨酸敏感和L-赖氨酸抗性成分。抑制囊胚中丙氨酸转运最显著成分的氨基酸及其类似物范围与以下结论一致:系统B0,+在很大程度上负责这些胚胎中的L-丙氨酸摄取。此外,囊胚中的系统B0,+,而不是其他已知系统,在这些胚胎接近着床时变得易于激活,因此这种激活可能与着床有关。尽管数据与系统B0,+也存在于2细胞和8细胞胚胎中的可能性一致,但在发育的这些早期阶段,胚胎中L-丙氨酸转运相对较慢,妨碍了对其摄取丙氨酸能力的更详细研究。同样,囊胚中L-丙氨酸转运中不太显著的L-赖氨酸抗性成分可能早在2细胞阶段就存在于胚胎中。然而,L-丙氨酸转运的L-赖氨酸抗性成分不能归因于残余的系统B0,+活性,因为它被反式-OH-L-脯氨酸比L-精氨酸更强地抑制,而系统B0,+则相反。同样,L-色氨酸和L-亮氨酸对系统B0,+的抑制作用比L-丝氨酸或L-半胱氨酸更强,而这四种氨基酸对L-赖氨酸抗性成分的抑制作用同样良好。此外,L-丙氨酸流入的霍夫斯泰因图与以下解释一致:囊胚中至少存在两种介导的Na⁺依赖性L-丙氨酸转运成分。囊胚中L-丙氨酸转运中不太显著的成分相对容易受到L-亮氨酸和L-色氨酸的抑制,但它抵抗“模型”系统A底物MeAIB和系统ASC抑制剂L-青霉胺和阳离子氨基酸的抑制。(摘要截短至400字)

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