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首页> 外文期刊>Investigative ophthalmology & visual science >Identification and Functional Characterization of a Na(+)-Independent Large Neutral Amino Acid Transporter, LAT1, in Human and Rabbit Cornea.
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Identification and Functional Characterization of a Na(+)-Independent Large Neutral Amino Acid Transporter, LAT1, in Human and Rabbit Cornea.

机译:鉴定和功能表征的Na(+)-独立的大型中性氨基酸转运蛋白LAT1,在人和兔子的角膜中。

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摘要

PURPOSE. The objective of this research was to investigate the presence of an Na(+)-independent, large neutral amino acid transporter, LAT1, on rabbit corneal epithelium and human cornea. METHODS. Freshly excised rabbit corneas were used for transport studies and SIRC (a rabbit corneal cell line) cells for uptake studies. Transport and uptake characteristics of [(3)H]-L-phenylalanine were determined at various concentrations and pH. Inhibition studies were conducted in the presence of other L- and D-amino acids and metabolic inhibitors, such as ouabain and sodium azide, and in the absence of sodium to delineate the mechanism of uptake and transport. Reverse transcription-polymerase chain reaction (RT-PCR) for large neutral amino acid transporter-1 (LAT1) was performed on total RNA from rabbit cornea, SIRC cells, and human cornea. RESULTS. SIRC uptake of L-Phe was found to be saturable, with K(m) of 73 +/- 9 micro M, V(max) of 2.0 +/- 0.1 nanomoles/min per milligram protein, and K(d) of 0.44 +/- 0.6 micro L/min per milligram protein. Uptake was independent of pH, energy, and Na(+); inhibited by D-Leu, D-Phe, and an L-system-specific inhibitor 2-aminobicyclo [2,2,1] heptane-2-carboxylic acid (BCH), but not inhibited by L-Ala and charged amino acids. Transport of L-Phe across rabbit cornea was also saturable (K(m) = 33 +/- 8 micro M and V(max) = 0.26 +/- 0.03 nanomoles/min per square centimeter), energy independent, and subject to similar competitive inhibition. LAT1 was identified by RT-PCR in rabbit corneal, SIRC, and human corneal RNA. CONCLUSIONS. A Na(+)-independent, facilitative transport system, LAT1, was identified and functionally characterized on rabbit cornea. LAT1 was also identified on human cornea.
机译:目的。这项研究的目的是调查兔角膜上皮和人角膜上不存在Na(+)的大型中性氨基酸转运蛋白LAT1的存在。方法。新鲜切除的兔角膜用于转运研究,而SIRC(兔角膜细胞系)细胞用于吸收研究。在各种浓度和pH下测定[(3)H] -L-苯丙氨酸的转运和吸收特性。在存在其他L-和D-氨基酸以及代谢抑制剂(如哇巴因和叠氮化钠)的情况下,以及在没有钠的情况下进行抑制研究,以描述摄取和转运的机制。对来自兔角膜,SIRC细胞和人角膜的总RNA进行了大型中性氨基酸转运蛋白1(LAT1)的逆转录聚合酶链反应(RT-PCR)。结果。发现SIRC对L-Phe的吸收是可饱和的,K(m)为73 +/- 9 microM,V(max)为2.0 +/- 0.1 nanomoles / min每毫克蛋白质,K(d)为0.44每毫克蛋白质+/- 0.6微升/分钟。吸收与pH,能量和Na(+)无关;被D-Leu,D-Phe和L系统特异性抑制剂2-氨基双环[2,2,1]庚烷-2-羧酸(BCH)抑制,但未被L-Ala和带电荷的氨基酸抑制。 L-Phe在兔角膜上的转运也是可饱和的(K(m)= 33 +/- 8 micro M和V(max)= 0.26 +/- 0.03 nanomoles / min每平方厘米),独立于能量且受相似的影响竞争抑制。通过RT-PCR在兔角膜,SIRC和人角膜RNA中鉴定了LAT1。结论。 Na(+)独立,便利运输系统,LAT1,已确定并在兔角膜上的功能特征。在人角膜上也鉴定出LAT1。

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