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首页> 外文期刊>The Biochemical Journal >Electrostatic and potential cation-pi forces may guide the interaction of extracellular loop III with Na+ and bile acids for human apical Na+-dependent bile acid transporter
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Electrostatic and potential cation-pi forces may guide the interaction of extracellular loop III with Na+ and bile acids for human apical Na+-dependent bile acid transporter

机译:静电和潜在的阳离子-pi力可能指导细胞外环III与Na +和胆汁酸的相互作用,从而促进人类心尖的Na +依赖性胆汁酸转运蛋白

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The hASBT (human apical Na+-dependent bile acid transporter) constitutes a key target of anti-hypercholesterolaemic therapies and pro-drug approaches; physiologically, hASBT actively reclaims bile acids along the terminal ileum via Na+ co-transport. Previously, TM (transmembrane segment) 7 was identified as part of the putative substrate permeation pathway using SCAM (substitute cysteine accessibility mutagenesis). In the present study, SCAM was extended through EL3 (extracellular loop 3; residues Arg(254)-Val(286)) that leads into TM7 from the exofacial matrix. Activity of most EL3 mutants was significantly hampered upon cysteine substitution, whereas ten (out of 31) were functionally inactive (<10% activity). Since only E282C lacked plasma membrane expression, EL3 amino acids predominantly fulfill critical functional roles during transport. Oppositely charged membrane-impermeant MTS (methanethiosulfonate) reagents {MTSET [(2-trimethylammonium) ethyl MTS] and MTSES [(2-sulfonatoethyl) MTS]} produced mostly similar inhibition profiles wherein only middle and descending loop segments (residues Thr(267)-Val(286)) displayed significant MTS sensitivity. The presence of bile acid substrate significantly reduced the rates of MTS modification for all MTS-sensitive mutants, suggesting a functional association between EL3 residues and bile acids. Activity assessments at equilibrative [Na+] revealed numerous Na+-sensitive residues, possibly performing auxiliary functions during transport such as transduction of protein conformational changes during translocation. Integration of these data suggests ligand interaction points along EL3 via electrostatic interactions with Arg(256), Glu(261) and probably Glu(282) and a potential cation-pi interaction with Phe(278). We conclude that EL3 amino acids are essential for hASBT activity, probably as primary substrate interaction points using long-range electrostatic attractive forces.
机译:hASBT(人类根尖的Na +依赖性胆汁酸转运蛋白)构成了抗高胆固醇血症疗法和前药疗法的关键目标;在生理上,hASBT通过Na +共转运,沿回肠末端主动回收胆汁酸。以前,使用SCAM(替代性半胱氨酸可及性诱变)将TM(跨膜段)7鉴定为推定的底物渗透途径的一部分。在本研究中,SCAM通过EL3(细胞外环3;残基Arg(254)-Val(286))延伸,从ELF面膜基质进入TM7。大多数EL3突变体的活性在半胱氨酸取代后显着受到阻碍,而10个(31个中的10个)功能上无活性(<10%活性)。由于只有E282C缺乏质膜表达,因此EL3氨基酸在运输过程中主要发挥关键的功能作用。带有相反电荷的膜不渗透MTS(甲硫基磺酸盐)试剂{MTSET [(2-三甲基铵)乙基MTS]和MTSES [(2-磺基乙基)MTS]}产生的抑制谱基本相似,其中仅中段和下降段(残基Thr(267) -Val(286))显示出显着的MTS敏感性。胆汁酸底物的存在显着降低了所有MTS敏感突变体的MTS修饰率,表明EL3残基和胆汁酸之间存在功能关联。在平衡的[Na +]上的活性评估显示了许多Na +敏感残基,可能在转运过程中发挥辅助功能,例如在转运过程中转导蛋白质构象变化。这些数据的整合表明,通过与Arg(256),Glu(261)和可能的Glu(282)的静电相互作用以及与Phe(278)的潜在阳离子-π相互作用,沿着EL3的配体相互作用点。我们得出结论,EL3氨基酸对于hASBT活性至关重要,可能是使用远程静电吸引力作为主要底物相互作用点。

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