首页> 美国卫生研究院文献>Toxicological Sciences >An Extended Structure–Activity Relationship of Nondioxin-Like PCBs Evaluates and Supports Modeling Predictions and Identifies Picomolar Potency of PCB 202 Towards Ryanodine Receptors
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An Extended Structure–Activity Relationship of Nondioxin-Like PCBs Evaluates and Supports Modeling Predictions and Identifies Picomolar Potency of PCB 202 Towards Ryanodine Receptors

机译:非二恶英样PCB的扩展的结构与活性关系评估并支持建模预测并确定PCB 202对Ryanodine受体的皮摩尔效能

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摘要

Nondioxin-like polychlorinated biphenyls (NDL PCBs) activate ryanodine-sensitive Ca2+ channels (RyRs) and this activation has been associated with neurotoxicity in exposed animals. RyR-active congeners follow a distinct structure–activity relationship and a quantitative structure–activity relationship (QSAR) predicts that a large number of PCBs likely activate the receptor, which requires validation. Additionally, previous structural based conclusions have been established using receptor ligand binding assays but the impact of varying PCB structures on ion channel gating behavior is not understood. We used [3H]Ryanodine ([3H]Ry) binding to assess the RyR-activity of 14 previously untested PCB congeners evaluating the predictability of the QSAR. Congeners determined to display widely varying potency were then assayed with single channel voltage clamp analysis to assess direct influences on channel gating kinetics. The RyR-activity of individual PCBs assessed in in vitro assays followed the general pattern predicted by the QSAR but binding and lipid bilayer experiments demonstrated higher potency than predicted. Of the 49 congeners tested to date, tetra-ortho PCB 202 was found to be the most potent RyR-active congener increasing channel open probability at 200 pM. Shifting meta-substitutions to the para-position resulted in a > 100-fold reduction in potency as seen with PCB 197. Non-ortho PCB 11 was found to lack activity at the receptor supporting a minimum mono-ortho substitution for PCB RyR activity. These findings expand and support previous SAR assessments; where out of the 49 congeners tested to date 42 activate the receptor demonstrating that the RyR is a sensitive and common target of PCBs.
机译:类非二恶英类多氯联苯(NDL PCB)激活了对精氨酸敏感的Ca 2+ 通道(RyRs),这种激活与暴露动物的神经毒性有关。 RyR活性同源物遵循独特的结构-活性关系,定量结构-活性关系(QSAR)预测大量PCB可能激活受体,这需要验证。另外,已经使用受体配体结合测定法建立了先前基于结构的结论,但是尚不清楚变化的PCB结构对离子通道门控行为的影响。我们使用[ 3 H] Ryanodine([ 3 H] Ry)结合来评估14个先前未经测试的PCB同系物的RyR活性,从而评估QSAR的可预测性。然后用单通道电压钳分析法分析确定显示出广泛不同效能的同类物,以评估对通道门控动力学的直接影响。在体外测定中评估的各个PCB的RyR活性遵循QSAR预测的一般模式,但结合和脂质双层实验显示出比预期更高的效价。在迄今为止测试的49个同类物中,四邻位PCB 202被发现是最有效的RyR活性同类物,在200 atpM时增加了通道开放的可能性。如将PCB 197所见,将间位取代转移至对位会导致效能降低 100倍。发现非邻位PCB 11在受体处缺乏活性,支持PCB RyR活性的最小单邻位取代。这些发现扩大并支持了先前的SAR评估;迄今为止,已测试的49个同源物中有42个激活了受体,表明RyR是PCB的敏感靶点。

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