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首页> 外文期刊>Biological & pharmaceutical bulletin >Amino Acid Residues Involved in the Substrate Specificity of TauT/ SLC6A6 for Taurine and γ-Aminobutyric Acid
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Amino Acid Residues Involved in the Substrate Specificity of TauT/ SLC6A6 for Taurine and γ-Aminobutyric Acid

机译:TauT / SLC6A6对牛磺酸和γ-氨基丁酸的底物特异性涉及的氨基酸残基

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摘要

Taurine transporter (TauT/SLC6A6) is an "honorary" γ-aminobutyric acid (GABA) transporter because of its low affinity for GABA. The sequence analysis of TauT implied the role of Gly57, Phe58, Leu306 and Glu406 in the substrate recognition of TauT, and amino acid-substitutions were performed. Immunocyto-chemistry supported no marked effect of mutations on the expression of TauT. TauT-expressing oocytes showed a reduction in [~3H]taurine uptake by G57E, F58I, L306Q and E406C, and change in [~3H]GABA uptake by G57E and E406C, suggesting their significant roles in the function of TauT. G57E lost the activity of [~3H]taurine and [~3H]GABA uptake, suggesting that Gly57 is involved in the determination of substrate pocket volume and in the interaction with substrates. E406C exhibited a decrease and an increase in the affinity for taurine and GABA, respectively, suggesting the involvement of Glu406 in the substrate specificity of TauT. The inhibition study supported the role of Glu406 in the substrate specificity since [~3H]taurine and [~3H]GABA uptake by E406C was less sensitive to taurine and β-alanine, and more sensitive to GABA and nipecotic acid than was the case with wild type of TauT. F58I had an increased affinity for GABA, suggesting the involvement of Phe58 in the substrate accessibility. The kinetic parameters showed the decreased and increased affinities of L306Q for taurine and GABA, respectively, supporting that substrate recognition of TauT is conformationally regulated by the branched-side chain of Leu306. In conclusion, the present results suggest that these residues play important roles in the transport function and substrate specificity of TauT.
机译:牛磺酸转运蛋白(TauT / SLC6A6)是一种“荣誉”γ-氨基丁酸(GABA)转运蛋白,因为它对GABA的亲和力低。 TauT的序列分析暗示了Gly57,Phe58,Leu306和Glu406在TauT的底物识别中的作用,并进行了氨基酸取代。免疫细胞化学支持突变对TauT表达无明显影响。表达TauT的卵母细胞显示G57E,F58I,L306Q和E406C吸收[〜3H]牛磺酸减少,G57E和E406C吸收[〜3H] GABA的变化,表明它们在TauT功能中起重要作用。 G57E失去了[〜3H]牛磺酸的活性和[〜3H] GABA的摄取,这表明Gly57参与了底物袋体积的测定以及与底物的相互作用。 E406C分别显示出对牛磺酸和GABA的亲和力降低和增加,表明Glu406与TauT的底物特异性有关。抑制研究支持了Glu406在底物特异性中的作用,因为E406C摄取的[〜3H]牛磺酸和[〜3H] GABA对牛磺酸和β-丙氨酸的敏感性较低,而对GABA和乳糜酸的敏感性较之TauT的野生型。 F58I对GABA的亲和力增加,表明Phe58与底物可及性有关。动力学参数分别显示L306Q对牛磺酸和GABA的亲和力降低和增加,支持TauT的底物识别受Leu306支链侧构象调控。总之,目前的结果表明这些残基在TauT的转运功能和底物特异性中起重要作用。

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