首页> 外文期刊>Acta crystallographica. Section D, Structural biology >Substrate binding in the bile acid transporter ASBT_Yf from Yersinia frederiksenii
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Substrate binding in the bile acid transporter ASBT_Yf from Yersinia frederiksenii

机译:底物结合胆汁酸转运体

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Apical sodium-dependent bile acid transporter (ASBT) retrieves bile acids from the small intestine and plays a pivotal role in enterohepatic circulation. Currently, high-resolution structures are available for two bacterial ASBT homologs (ASBT_NM from Neisseria meningitides and ASBT_Yf from Yersinia frederiksenii), from which an elevator-style alternating-access mechanism has been proposed for substrate transport. A key concept in this model is that the substrate binds to the central cavity of the transporter so that the elevator-like motion can expose the bound substrate alternatingly to either side of the membrane during a transport cycle. However, no structure of an ASBT has been solved with a substrate bound in its central cavity, so how a substrate binds to ASBT remains to be defined. In this study, molecular docking, structure determination and functional analysis were combined to define and validate the details of substrate binding in ASBT_Yf. The findings provide coherent evidence to provide a clearer picture of how the substrate binds in the central cavity of ASBT_Yf that fits the alternating-access model.
机译:顶端sodium-dependent胆汁酸转运(ASBT)检索胆汁酸的小肠和扮演关键的角色肝肠循环。高分辨率结构可用于两个细菌ASBT同系物(ASBT_NM脑膜炎从一个elevator-style frederiksenii)alternating-access机制提出了底物运输。模型底物结合中央运输车,这样的空腔貌似升降机的运动可以公开衬底交替的两侧膜在传输周期。结构的ASBT已经解决了在其中央腔底物结合,所以如何底物结合ASBT有待定义。这项研究中,分子对接结构决心和功能分析定义和验证的细节底物在ASBT_Yf绑定。提供一致的证据提供更清晰在中央的底物结合腔ASBT_Yf符合alternating-access模型。

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