首页> 美国卫生研究院文献>The Journal of General Physiology >Modulation of enrofloxacin binding in OmpF by Mg2+ as revealed by the analysis of fast flickering single-porin current
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Modulation of enrofloxacin binding in OmpF by Mg2+ as revealed by the analysis of fast flickering single-porin current

机译:通过快速闪烁单孔电流分析揭示Mg2 +对恩氟沙星在OmpF中的结合调节

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摘要

One major determinant of the efficacy of antibiotics on Gram-negative bacteria is the passage through the outer membrane. During transport of the fluoroquinolone enrofloxacin through the trimeric outer membrane protein OmpF of Escherichia coli, the antibiotic interacts with two binding sites within the pore, thus partially blocking the ionic current. The modulation of one affinity site by Mg2+ reveals further details of binding sites and binding kinetics. At positive membrane potentials, the slow blocking events induced by enrofloxacin in Mg2+-free media are converted to flickery sojourns at the highest apparent current level (all three pores flickering). This indicates weaker binding in the presence of Mg2+. Analysis of the resulting amplitude histograms with β distributions revealed the rate constants of blocking (kOB) and unblocking (kBO) in the range of 1,000 to 120,000 s−1. As expected for a bimolecular reaction, kOB was proportional to blocker concentration and kBO independent of it. kOB was approximately three times lower for enrofloxacin coming from the cis side than from the trans side. The block was not complete, leading to a residual conductivity of the blocked state being ∼25% of that of the open state. Interpretation of the results has led to the following model: fast flickering as caused by interaction of Mg2+ and enrofloxacin is related to the binding site at the trans side, whereas the cis site mediates slow blocking events which are also found without Mg2+. The difference in the accessibility of the binding sites also explains the dependency of kOB on the side of enrofloxacin addition and yields a means of determining the most plausible orientation of OmpF in the bilayer. The voltage dependence suggests that the dipole of the antibiotic has to be adequately oriented to facilitate binding.
机译:抗生素对革兰氏阴性细菌功效的主要决定因素是通过外膜的通道。在氟喹诺酮恩诺沙星通过大肠杆菌三聚体外膜蛋白OmpF的运输过程中,抗生素与孔内的两个结合位点相互作用,从而部分阻断了离子电流。 Mg 2 + 对一个亲和位点的调控揭示了结合位点和结合动力学的更多细节。在膜电位为正值时,恩诺沙星在不含Mg 2 + 的培养基中诱导的缓慢阻滞事件在最高表观电流水平下转化为闪烁的固体(所有三个孔均闪烁)。这表明存在Mg 2 + 时结合力较弱。对具有β分布的幅度直方图进行分析,发现阻塞(kOB)和非阻塞(kBO)的速率常数在1,000至120,000 s -1 的范围内。正如双分子反应所预期的那样,kOB与阻滞剂浓度成正比,而kBO与之无关。恩诺沙星的顺式作用的kOB约比反式作用的kOB低三倍。阻塞没有完成,导致阻塞状态的残余电导率为打开状态的电导率的约25%。结果的解释导致了以下模型:Mg 2 + 与恩诺沙星相互作用引起的快速闪烁与反式结合位点有关,而顺式位点介导了缓慢的阻断事件还发现不含Mg 2 + 。结合位点可及性的差异也解释了kOB在恩诺沙星添加方面的依赖性,并提供了一种确定双层中OmpF最合理的取向的方法。电压依赖性表明,抗生素的偶极子必须充分定向才能促进结合。

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