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Estimating the electrostatic potential at the acetylcholine receptor agonist site using power saturation EPR

机译:使用功率饱和EPR估算乙酰胆碱受体激动剂位点的静电势

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摘要

Continuous wave EPR power saturation was used to measure electrostatic potentials at spin-labeled sites. Membrane surface potentials were estimated by power saturating the EPR spectrum of a membrane bound 14N spin-labeled amphiphile in the presence of a neutral or positively charged 15N labeled aqueous spin probe. The potentials that are measured are in good agreement with other probe measurements and with the predictions of the Gouy–Chapman–Stern theory, indicating that this is a valid approach to determine electrostatic potentials. A spin-labeled affinity probe based on maleimidobenzyltrimethylammonium was synthesized and could be derivatized to a sulfhydryl near either agonist site on the nicotinic acetylcholine receptor. The amplitudes of motion of the spin-probe on the ns time scale are significantly different when the two labeled sites are compared, and the probe is more restricted in its motion when attached to the more easily labeled site. When attached to this agonist site, power saturation EPR yields an electrostatic potential of ?15 mV. Two other sulfhydryl-specific probes were used to label this site in reconstituted receptor containing membranes. These probes show less contact with the receptor and reduced electrostatic potentials, indicating that there is a strong spatial dependence to the potential at the agonist site. This work demonstrates that power saturation EPR provides a general method that can be used to estimate electrostatic potentials at any specifically spin-labeled macromolecular site.
机译:连续波EPR功率饱和用于测量自旋标记位点的静电势。通过在中性或带正电荷的15N标记的水旋转探针存在下,使膜结合的14N旋转标记的两亲物的EPR谱饱和,可以估算膜表面的电势。测量的电势与其他探针测量以及Gouy-Chapman-Stern理论的预测非常吻合,表明这是确定静电电势的有效方法。合成了基于马来酰亚胺基苄基三甲基铵的自旋标记亲和探针,可以将其衍生为烟碱乙酰胆碱受体上任一激动剂位点附近的巯基。比较两个标记位点时,自旋探针的运动幅度在ns时标上显着不同,并且探针连接到更容易标记的位点时,其运动受到更大的限制。当连接到该激动剂位点时,功率饱和EPR产生的静电势约为15 mV。使用另外两种巯基特异性探针在重构的含受体膜中标记该位点。这些探针显示出与受体的接触减少,静电电位降低,表明对激动剂位点的电位有很强的空间依赖性。这项工作表明,功率饱和EPR提供了一种通用方法,可用于估计在任何经过​​自旋标记的大分子位点处的静电势。

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