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Conserved Tryptophan Residues within Putative Transmembrane Domain 6 Affect Transport Function of Organic Anion Transporting Polypeptide 1B1

机译:假定跨膜域6中的保守色氨酸残基影响有机阴离子转运多肽1B1的转运功能。

摘要

The organic anion-transporting polypeptides (OATPs, gene symbol SLCO) are a family of transporters that play important roles in the absorption, distribution, metabolism, and excretion of various drugs. Although substrate specificity of transporter proteins is under extensive study, the underlying mechanisms for substrate binding and/or recognition remain largely unknown. Transmembrane domain 6 (TM6) is a relatively conserved region within OATP family members, and several amino acid residues on its extracellular half are part of the OATP family signature sequence D-X-RW-(I,V)-GAWWX-G-(F,L)-L. In the present study, two adjacent tryptophan residues (Trp258 and Trp259) within TM6 were identified as critical amino acids for the transport function of OATP1B1. Kinetic studies showed that substitution of Trp258 with alanine resulted in monophasic kinetics for estrone-3-sulfate uptake, with a significantly higher Km value (Km = 12.0 ± 2.8 μM) than the high-affinity component of wild-type OATP1B1 (Km = 0.38 ± 0.06 μM). On the other hand, W259A retained the biphasic characteristic of the transporter. Km values of the high- and low-affinity components for estrone-3-sulfate of W259A are 1.93 ± 0.76 μM and 30.8 ± 4.4 μM, respectively. Further studies revealed that W258A retained transport function of another prototypic substrate, taurocholate, while W259A displayed a dramatically reduced uptake of the substrate and exhibited an 8-fold increase in the Km value compared with that of the wild-type and W258A. Our results suggest that Trp258 and Trp259 may play different roles in the uptake of different substrates by OATP1B1.
机译:有机阴离子转运多肽(OATP,基因符号SLCO)是一系列转运蛋白,在各种药物的吸收,分布,代谢和排泄中起着重要作用。尽管转运蛋白的底物特异性正在广泛研究中,但底物结合和/或识别的潜在机制仍非常未知。跨膜结构域6(TM6)是OATP家族成员中一个相对保守的区域,其细胞外半部分的几个氨基酸残基是OATP家族签名序列DX-RW-(I,V)-GAWWX-G-(F,二。在本研究中,TM6中两个相邻的色氨酸残基(Trp258和Trp259)被鉴定为OATP1B1转运功能的关键氨基酸。动力学研究表明,用丙氨酸替代Trp258会导致雌激素-3-硫酸盐摄取的单相动力学,其Km值(Km = 12.0±2.8μM)明显高于野生型OATP1B1的高亲和力组分(Km = 0.38)。 ±0.06μM)。另一方面,W259A保留了转运蛋白的双相特性。 W259A的三硫酸雌酮的高亲和力和低亲和力成分的Km值分别为1.93±0.76μM和30.8±4.4μM。进一步的研究表明,W258A保留了另一种原型底物牛磺胆酸盐的转运功能,而W259A与野生型和W258A相比,底物的摄取显着降低,并且Km值增加了8倍。我们的结果表明,Trp258和Trp259在OATP1B1对不同底物的吸收中可能发挥不同的作用。

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