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Sulfated Metabolites of Polychlorinated Biphenyls Are High-Affinity Ligands for the Thyroid Hormone Transport Protein Transthyretin

机译:多氯联苯的硫酸盐代谢产物是甲状腺激素转运蛋白运甲状腺素蛋白的高亲和力配体。

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摘要

Background: The displacement of l-thyroxine (T4) from binding sites on transthyretin (TTR) is considered a significant contributing mechanism in polychlorinated biphenyl (PCB)-induced thyroid disruption. Previous research has discovered hydroxylated PCB metabolites (OH-PCBs) as high-affinity ligands for TTR, but the binding potential of conjugated PCB metabolites such as PCB sulfates has not been explored.Objectives: We evaluated the binding of five lower-chlorinated PCB sulfates to human TTR and compared their binding characteristics to those determined for their OH-PCB precursors and for T4.Methods: We used fluorescence probe displacement studies and molecular docking simulations to characterize the binding of PCB sulfates to TTR. The stability of PCB sulfates and the reversibility of these interactions were characterized by HPLC analysis of PCB sulfates after their binding to TTR. The ability of OH-PCBs to serve as substrates for human cytosolic sulfotransferase 1A1 (hSULT1A1) was assessed by OH-PCB–dependent formation of adenosine-3´,5´-diphosphate, an end product of the sulfation reaction.Results: All five PCB sulfates were able to bind to the high-affinity binding site of TTR with equilibrium dissociation constants (Kd values) in the low nanomolar range (4.8–16.8 nM), similar to that observed for T4 (4.7 nM). Docking simulations provided corroborating evidence for these binding interactions and indicated multiple high-affinity modes of binding. All OH-PCB precursors for these sulfates were found to be substrates for hSULT1A1.Conclusions: Our findings show that PCB sulfates are high-affinity ligands for human TTR and therefore indicate, for the first time, a potential relevance for these metabolites in PCB-induced thyroid disruption.
机译:背景:左甲状腺素(T4)从运甲状腺素蛋白(TTR)结合位点的置换被认为是多氯联苯(PCB)引起的甲状腺破坏的重要机制。先前的研究发现羟基化PCB代谢物(OH-PCBs)是TTR的高亲和力配体,但尚未探索共轭PCB代谢物(如PCB硫酸盐)的结合潜力。目的:我们评估了五种低氯含量的PCB硫酸盐的结合方法:我们使用荧光探针位移研究和分子对接模拟来表征PCB硫酸盐与TTR的结合。 PCB硫酸盐与TTR结合后的HPLC分析表明,PCB硫酸盐的稳定性和这些相互作用的可逆性。 OH-PCBs作为人胞质磺基转移酶1A1(hSULT1A1)的底物的能力通过依赖于OH-PCB的硫酸化反应终产物腺苷-3′,5′-二磷酸的形成来评估。结果:所有五个多氯联苯硫酸盐能够以低纳摩尔范围(4.8-16.8 nM)的平衡解离常数(Kd值)与TTR的高亲和力结合位点结合,类似于T4的观察值(4.7 nM)。对接模拟为这些结合相互作用提供了确凿的证据,并表明了多种高亲和力结合模式。结论:我们的发现表明PCB硫酸盐是人TTR的高亲和力配体,因此首次表明这些硫酸盐的所有OH-PCB前体都是hSULT1A1的底物。因此,这首次表明了PCB中这些代谢物的潜在相关性。引起甲状腺破坏。

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