首页> 美国卫生研究院文献>PLoS Clinical Trials >Identification of Amino Acids Essential for Estrone-3-Sulfate Transport within Transmembrane Domain 2 of Organic Anion Transporting Polypeptide 1B1
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Identification of Amino Acids Essential for Estrone-3-Sulfate Transport within Transmembrane Domain 2 of Organic Anion Transporting Polypeptide 1B1

机译:有机阴离子转运多肽1B1跨膜域2内的雌酮-3-硫酸盐转运必需氨基酸的鉴定。

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摘要

As an important structure in membrane proteins, transmembrane domains have been found to be crucial for properly targeting the protein to cell membrane as well as carrying out transport functions in transporters. Computer analysis of OATP sequences revealed transmembrane domain 2 (TM2) is among those transmembrane domains that have high amino acid identities within different family members. In the present study, we identify four amino acids (Asp70, Phe73, Glu74, and Gly76) that are essential for the transport function of OATP1B1, an OATP member that is specifically expressed in the human liver. A substitution of these four amino acids with alanine resulted in significantly reduced transport activity. Further mutagenesis showed the charged property of Asp70 and Glu74 is critical for proper function of the transporter protein. Comparison of the kinetic parameters indicated that Asp70 is likely to interact with the substrate while Glu74 may be involved in stabilizing the binding site through formation of a salt-bridge. The aromatic ring structure of Phe73 seems to play an important role because substitution of Phe73 with tyrosine, another amino acid with a similar structure, led to partially restored transport function. On the other hand, replacement of Gly76 with either alanine or valine could not recover the function of the transporter. Considering the nature of a transmembrane helix, we proposed that Gly76 may be important for maintaining the proper structure of the protein. Interestingly, when subjected to transport function analysis of higher concentration of esteone-3-sulfate (50 µM) that corresponds to the low affinity binding site of OATP1B1, mutants of Phe73, Glu74, and Gly76 all showed a transport function that is comparable to that of the wild-type, suggesting these amino acids may have less impact on the low affinity component of esteone-3-sulfate within OATP1B1, while Asp 70 seems to be involved in the interaction of both sites.
机译:作为膜蛋白中的重要结构,跨膜结构域对于将蛋白正确靶向细胞膜以及在转运蛋白中执行转运功能至关重要。 OATP序列的计算机分析表明,跨膜结构域2(TM2)是那些在不同家族成员中具有高度氨基酸同一性的跨膜结构域。在本研究中,我们确定了四个氨基酸(Asp70,Phe73,Glu74和Gly76),这些氨基酸对于OATP1B1(在人体肝脏中特异性表达的OATP成员)的转运功能至关重要。用丙氨酸替代这四个氨基酸导致运输活性显着降低。进一步诱变表明,Asp70和Glu74的带电性质对于转运蛋白的正常功能至关重要。动力学参数的比较表明,Asp70可能与底物相互作用,而Glu74可能通过形成盐桥参与稳定结合位点。 Phe73的芳香环结构似乎起着重要作用,因为Phe73被酪氨酸取代,酪氨酸是另一种具有类似结构的氨基酸,导致部分恢复了转运功能。另一方面,用丙氨酸或缬氨酸替代Gly76不能恢复转运蛋白的功能。考虑到跨膜螺旋的性质,我们提出Gly76对维持蛋白质的适当结构可能很重要。有趣的是,当进行较高浓度的对应于OATP1B1低亲和力结合位点的雌二醇3-硫酸酯(50 µM)的转运功能分析时,Phe73,Glu74和Gly76的突变体均显示了与的野生型,表明这些氨基酸可能对OATP1B1中的esteone-3-硫酸盐的低亲和力成分影响较小,而Asp 70似乎参与了两个位点的相互作用。

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