Literature DB >> 32229587

Certain ortho-hydroxylated brominated ethers are promiscuous kinase inhibitors that impair neuronal signaling and neurodevelopmental processes.

Robert G Poston1, Lillian Murphy2, Ayna Rejepova1, Mina Ghaninejad-Esfahani1, Joshua Segales1, Kimberly Mulligan2, Ramendra N Saha3.   

Abstract

The developing nervous system is remarkably sensitive to environmental signals, including disruptive toxins, such as polybrominated diphenyl ethers (PBDEs). PBDEs are an environmentally pervasive class of brominated flame retardants whose neurodevelopmental toxicity mechanisms remain largely unclear. Using dissociated cortical neurons from embryonic Rattus norvegicus, we found here that chronic exposure to 6-OH-BDE-47, one of the most prevalent hydroxylated PBDE metabolites, suppresses both spontaneous and evoked neuronal electrical activity. On the basis of our previous work on mitogen-activated protein kinase (MAPK)/extracellular signal-related kinase (ERK) (MEK) biology and our observation that 6-OH-BDE-47 is structurally similar to kinase inhibitors, we hypothesized that certain hydroxylated PBDEs mediate neurotoxicity, at least in part, by impairing the MEK-ERK axis of MAPK signal transduction. We tested this hypothesis on three experimental platforms: 1) in silico, where modeling ligand-protein docking suggested that 6-OH-BDE-47 is a promiscuous ATP-competitive kinase inhibitor; 2) in vitro in dissociated neurons, where 6-OH-BDE-47 and another specific hydroxylated BDE metabolite similarly impaired phosphorylation of MEK/ERK1/2 and activity-induced transcription of a neuronal immediate early gene; and 3) in vivo in Drosophila melanogaster, where developmental exposures to 6-OH-BDE-47 and a MAPK inhibitor resulted in offspring displaying similarly increased frequency of mushroom-body β-lobe midline crossing, a metric of axonal guidance. Taken together, our results support that certain ortho-hydroxylated PBDE metabolites are promiscuous kinase inhibitors and can cause disruptions of critical neurodevelopmental processes, including neuronal electrical activity, pre-synaptic functions, MEK-ERK signaling, and axonal guidance.
© 2020 Poston et al.

Entities:  

Keywords:  6-OH–BDE-47; Drosophila; MEK–ERK; PBDE; axon; environmental toxins; neurodevelopmental toxicity; signal transduction; toxicology; toxin

Mesh:

Substances:

Year:  2020        PMID: 32229587      PMCID: PMC7196656          DOI: 10.1074/jbc.RA119.011138

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  107 in total

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Review 3.  Synaptically Localized Mitogen-Activated Protein Kinases: Local Substrates and Regulation.

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Journal:  Mol Neurobiol       Date:  2015-11-14       Impact factor: 5.590

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8.  Hydroxylation increases the neurotoxic potential of BDE-47 to affect exocytosis and calcium homeostasis in PC12 cells.

Authors:  Milou M L Dingemans; Aart de Groot; Regina G D M van Kleef; Ake Bergman; Martin van den Berg; Henk P M Vijverberg; Remco H S Westerink
Journal:  Environ Health Perspect       Date:  2008-05       Impact factor: 9.031

9.  Cell type-dependent Erk-Akt pathway crosstalk regulates the proliferation of fetal neural progenitor cells.

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10.  Layer specific and general requirements for ERK/MAPK signaling in the developing neocortex.

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Journal:  Elife       Date:  2016-02-05       Impact factor: 8.140

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2.  Combining in vitro assays and mathematical modelling to study developmental neurotoxicity induced by chemical mixtures.

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