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首页> 外文期刊>Journal of Molecular Biology >Dynamic elements at both cytoplasmically and extracellularly facing sides of the UapA transporter selectively control the accessibility of substrates to their translocation pathway.
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Dynamic elements at both cytoplasmically and extracellularly facing sides of the UapA transporter selectively control the accessibility of substrates to their translocation pathway.

机译:UapA转运蛋白的细胞质和细胞外侧面的动态元件选择性地控制底物对其转运途径的可及性。

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摘要

In the UapA uric acid-xanthine permease of Aspergillus nidulans, subtle interactions between key residues of the putative substrate binding pocket, located in the TMS8-TMS9 loop (where TMS is transmembrane segment), and a specificity filter, implicating residues in TMS12 and the TMS1-TMS2 loop, are critical for function and specificity. By using a strain lacking all transporters involved in adenine uptake (DeltaazgA DeltafcyB DeltauapC) and carrying a mutation that partially inactivates the UapA specificity filter (F528S), we obtained 28 mutants capable of UapA-mediated growth on adenine. Seventy-two percent of mutants concern replacements of a single residue, R481, in the putative cytoplasmic loop TMS10-TMS11. Five missense mutations are located in TMS9, in TMS10 or in loops TMS1-TMS2 and TMS8-TMS9. Mutations in the latter loops concern residues previously shown to enlarge UapA specificity (Q113L) or to be part of a motif involved in substrate binding (F406Y). In all mutants, the ability of UapA to transport its physiological substrates remains intact, whereas the increased capacity for transport of adenine and other purines seems to be due to the elimination of elements that hinder the translocation of non-physiological substrates through UapA, rather than to an increase in relevant binding affinities. The additive effects of most novel mutations with F528S and allele-specific interactions of mutation R481G (TMS10-TMS11 loop) with Q113L (TMS1-TMS2 loop) or T526M (TMS12) establish specific interdomain synergy as a critical determinant for substrate selection. Our results strongly suggest that distinct domains at both sides of UapA act as selective dynamic gates controlling substrate access to their translocation pathway.
机译:在构巢曲霉的UapA尿酸-黄嘌呤通透酶中,位于TMS8-TMS9环(其中TMS是跨膜段)的推定底物结合口袋的关键残基与特异性过滤器之间的微妙相互作用,暗示了TMS12和TMS1-TMS2回路对于功能和特异性至关重要。通过使用缺少所有参与腺嘌呤摄取的转运蛋白的菌株(DeltaazgA DeltafcyB DeltauapC)并携带部分使UapA特异性滤膜失活的突变(F528S),我们获得了28个能够由UapA介导的腺嘌呤生长的突变体。 72%的突变体涉及推定细胞质环TMS10-TMS11中单个残基R481的取代。五个错义突变位于TMS9,TMS10或循环TMS1-TMS2和TMS8-TMS9中。后一个环中的突变涉及先前显示出可增加UapA特异性的残基(Q113L)或是参与底物结合的基序的一部分(F406Y)。在所有突变体中,UapA转运其生理底物的能力均保持不变,而腺嘌呤和其他嘌呤转运能力的提高似乎是由于消除了阻碍非生理底物通过UapA而不是通过其转运的元素相关绑定亲和力的增加。最新颖的F528S突变的加性效应以及突变R481G(TMS10-TMS11环)与Q113L(TMS1-TMS2环)或T526M(TMS12)的等位基因特异性相互作用建立了特定的域间协同作用,这是底物选择的关键决定因素。我们的研究结果强烈表明,UapA两侧的不同结构域可作为选择性动态门,控制底物进入其易位途径的通道。

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