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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >The intracellular NPxY motif is critical in maintaining the function and expression of human organic anion transporting polypeptide 1B1
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The intracellular NPxY motif is critical in maintaining the function and expression of human organic anion transporting polypeptide 1B1

机译:细胞内NPXY基序对于维持人有机阴离子输送多肽1B1的功能和表达至关重要

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Organic anion transporting polypeptides (OATPs, gene symbol SLCO) mediate sodium-independent transport of endogenous compounds such as bile salts, hormones and their conjugates as well as toxins and drugs. OATP1B1 is the major OATP specifically expressed at the basolateral membrane of human hepatocytes and many clinically important drugs have been shown to be substrates of the transporter. According to the computer-based hydropathy analysis, a large intracellular loop 3 (IL3) is situated between transmembrane domain 6 and 7 of OATPs, in which a conserved NPxY motif is found. In the current study, HEK293 cells expressing the HA-tagged OATP1B1 was utilized to investigate the role of the NPxY motif for the function and expression of the transporter. Alanine replacement of N335 or P336 retained substantial uptake function; while simultaneous mutation of these residues resulted in a double mutant that lost almost all the transport activity. On the other hand, Y338A showed > 80% reduction for estrone-3-sulfate uptake. Plasma membrane protein analysis revealed that N335/P336A completely lost its cell surface protein expression; while that of Y338A is dramatically reduced. Further investigation with pharmacological inhibitors and immunocytochemistry demonstrated that N335/336A is detained in the Golgi apparatus and Y338A exhibited accelerated protein degradation rate compared to that of the wild-type. Conservative replacement of Y338 with phenylalanine fully recovered uptake and expression of the transporter. In summary, a new role was observed for the NPxY motif located in the IL3 of OATP1B1, which may affect processing and stability of the transporter.
机译:有机阴离子输送多肽(OATPS,基因符号SLCO)介导与胆汁盐,激素及其缀合物等内源化合物的钠独立于胆碱以及毒素和药物。 OATP1B1是在人肝细胞的基底外侧膜特异性表达的主要燕麦,许多临床上重要的药物已被证明是转运蛋白的基材。根据基于计算机的水疗法分析,大的细胞内环3(IL3)位于燕麦片的跨膜结构域6和7之间,其中找到保守的NPxy基序。在目前的研究中,使用表达HA标记的OATP1B1的HEK293细胞来研究NPXY基序的作用和转运蛋白的功能和表达。丙氨酸替代N335或P33​​6保留了大量摄取功能;虽然这些残留物的同时突变导致双突变体几乎丧失所有的运输活性。另一方面,Y338A显示了Estrone-3-硫酸盐摄取的80%。血浆膜蛋白分析显示N335 / P336A完全失去了其细胞表面蛋白表达;虽然Y338a的虽然大大减少了。进一步与药理学抑制剂和免疫细胞化学进行研究证明,与野生型相比,GOLGI装置中的N335 / 336A被释放在GOLGI装置中,Y338A表现出加速的蛋白质降解速率。苯丙氨酸完全回收的苯丙氨酸的保守替代苯甲吡啶的摄取和转运蛋白的表达。总之,对于位于OATP1B1的IL3中的NPXY基序观察到了一种新的作用,这可能影响运输扣的加工和稳定性。

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