首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Periplasmic vestibule plays an important role for solute recruitment, selectivity, and gating in the Rh/Amt/MEP superfamily
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Periplasmic vestibule plays an important role for solute recruitment, selectivity, and gating in the Rh/Amt/MEP superfamily

机译:周质前庭在Rh / Amt / MEP超家族中对溶质募集,选择性和门控起着重要作用

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摘要

AmtB, a member of the Rh/Amt/MEP superfamily, is responsible for ammonia transport in Escherichia coli. The ammonia pathway in AmtB consists of a narrow hydrophobic lumen in between hydro-philic periplasmic and cytoplasmic vestibules. A series of molecular dynamics simulations (greater than 0.4 μs in total) were performed to determine the mechanism of solute recruitments and selectivity by the periplasmic vestibule. The results show that the periplasmic vestibule plays a crucial role in solute selectivity, and its solute preferences follow the order of NH_4~+ > NH_3 > CO_2. Based on our results, NH_4~+ recruitment is initiated by its interaction with either E70 or E225, highly conserved residues located at the entrance of the vestibule. Subsequently, the backbone carbonyl groups at the periplasmic vestibule direct NH_4~+ to the conserved aromatic cage at the bottom of the vestibule (known as the Am 1 site). The umbrella sampling simulations suggest that the conserved residue D160 is not directly involved in the ammonia conduction; rather its main function is to keep the structure of periplasmic vestibule intact. The MD simulations also revealed that two partially stacked phenyl rings of F107 and F215, separating the periplasmic vestibule from the hydrophobic lumen, flip open and closed simultaneously with a frequency of approximately 10~8 flipping events per second. These results show how the periplasmic vestibule selectively recruits NH_4~+ to the Am1 site, and also that the synchronized flipping of two phenyl rings potentially facilitates the solute transition from the periplasmic vestibule to the hydrophobic lumen in the Rh/Amt/ MEP superfamily.
机译:Rht / Amt / MEP超家族的成员AmtB负责大肠杆菌中的氨气运输。 AmtB中的氨途径由位于亲水性周质和细胞质前庭之间的狭窄疏水内腔组成。进行了一系列分子动力学模拟(总计大于0.4μs),以确定周质前庭的溶质募集和选择性机制。结果表明,周质前庭在溶质选择性中起着至关重要的作用,其溶质偏好依NH_4〜+> NH_3> CO_2的顺序排列。根据我们的结果,NH_4〜+的募集是通过其与前庭入口处高度保守的E70或E225的相互作用而开始的。随后,周质前庭的主链羰基将NH_4〜+引导至前庭底部的保守芳香族笼(称为Am 1位点)。伞式采样模拟表明,保守的残留物D160不直接参与氨的传导。相反,它的主要功能是保持周质前庭的结构完整。 MD模拟还显示,F107和F215的两个部分堆叠的苯环将周质前庭与疏水腔隔开,同时翻转打开和关闭,频率约为每秒10〜8次翻转事件。这些结果表明周质前庭如何选择性地将NH_4〜+募集到Am1位点,并且两个苯环的同步翻转潜在地促进了Rh / Amt / MEP超家族中从周质前庭到疏水性内腔的溶质过渡。

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