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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Evidence for the transport of neutral as well as cationic amino acids by ATA3, a novel and liver-specific subtype of amino acid transport system A
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Evidence for the transport of neutral as well as cationic amino acids by ATA3, a novel and liver-specific subtype of amino acid transport system A

机译:ATA3转运中性和阳离子氨基酸的证据,ATA3是一种新型且肝特异性的氨基酸转运系统A

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摘要

We report here on the cloning and functional characterization of the third subtype of amino acid transport system A, designated ATA3 (amino acid transporter A3), from a human liver cell line. This transporter consists of 547 amino acids and is structurally related to the members of the glutamine transporter family. The human ATA3 (hATA3) exhibits 88% identity in amino acid sequence with rat ATA3. The gene coding for hATA3 contains 16 exons and is located on human chromosome 12q13. It is expressed almost exclusively in the liver. hATA3 mediates the transport of neutral amino acids including α-(methylamino)isobutyric acid (MeAIB), the model substrate for system A, in a Na~+-coupled manner and the transport of cationic amino acids in a Na~+-independent manner. The affinity of hATA3 for cationic amino acids is higher than for neutral amino acids. The transport function of hATA3 is thus similar to that of system y~+L. The ability of hATA3 to transport cationic amino acids with high affinity is unique among the members of the glutamine transporter family. hATA1 and hATA2, the other two known members of the system A subfamily, show little affinity toward cationic amino acids. hATA3 also differs from hATA1 and hATA2 in exhibiting low affinity for MeAIB. Since liver does not express any of the previously known high-affinity cationic amino acid transporters, ATA3 is likely to provide the major route for the uptake of arginine in this tissue.
机译:我们在这里报道了从人类肝细胞系克隆的氨基酸运输系统A的第三种亚型,称为ATA3(氨基酸转运蛋白A3)的功能特征。该转运蛋白由547个氨基酸组成,在结构上与谷氨酰胺转运蛋白家族的成员有关。人ATA3(hATA3)在氨基酸序列上与大鼠ATA3具有88%的同一性。编码hATA3的基因包含16个外显子,位于人类12q13号染色体上。它几乎仅在肝脏中表达。 hATA3以Na〜+耦合的方式介导包括α-(甲基氨基)异丁酸(MeAIB),系统A的模型底物在内的中性氨基酸的运输,以及以Na〜+无关的方式运输阳离子氨基酸。 。 hATA3对阳离子氨基酸的亲和力高于对中性氨基酸的亲和力。因此,hATA3的转运功能类似于系统y + L的转运功能。在谷氨酰胺转运蛋白家族成员中,hATA3以高亲和力转运阳离子氨基酸的能力是独特的。系统A亚家族的另外两个已知成员hATA1和hATA2对阳离子氨基酸几乎没有亲和力。 hATA3与hATA1和hATA2的区别还在于对MeAIB的亲和力低。由于肝脏不表达任何先前已知的高亲和力阳离子氨基酸转运蛋白,因此ATA3可能为在该组织中摄取精氨酸提供了主要途径。

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