| Literature DB >> 31143184 |
Erica C Dresselhaus1, Mollie K Meffert1.
Abstract
Nuclear Factor Kappa B (NF-κB) is a ubiquitously expressed transcription factor with key functions in a wide array of biological systems. While the role of NF-κB in processes, such as host immunity and oncogenesis has been more clearly defined, an understanding of the basic functions of NF-κB in the nervous system has lagged behind. The vast cell-type heterogeneity within the central nervous system (CNS) and the interplay between cell-type specific roles of NF-κB contributes to the complexity of understanding NF-κB functions in the brain. In this review, we will focus on the emerging understanding of cell-autonomous regulation of NF-κB signaling as well as the non-cell-autonomous functional impacts of NF-κB activation in the mammalian nervous system. We will focus on recent work which is unlocking the pleiotropic roles of NF-κB in neurons and glial cells (including astrocytes and microglia). Normal physiology as well as disorders of the CNS in which NF-κB signaling has been implicated will be discussed with reference to the lens of cell-type specific responses.Entities:
Keywords: NF-κB; Neurons; Plasticity; central nervous system (CNS); gene expression; glia; synapse; transcription
Year: 2019 PMID: 31143184 PMCID: PMC6520659 DOI: 10.3389/fimmu.2019.01043
Source DB: PubMed Journal: Front Immunol ISSN: 1664-3224 Impact factor: 7.561
Summary of NF-κB roles in neurons and glia, both in normal physiology and disease.
| Neuron | * Synaptic plasticity | * Aberrant synapse to nuclear communication |
| Glia | * Immune response | * Chronic NF-κB activation elevates neuroinflammation and neuronal cell death |
The pleiotropic functions of the NF-κB signaling pathway coupled with the cellular diversity of the nervous system mean that this table reflects generalizations, while more specific details are in the text of this review.
A reference categorizing primary literature cited in this review according to the specificity of the brain cell type in which NF-κB is investigated: neurons, microglia, or astrocytes.
| ( | NF-kappaB p50-deficient mice show reduced anxiety-like behaviors in tests of exploratory drive and anxiety | Kassed | 2004 |
| ( | Lack of NF-kappaB p50 exacerbates degeneration of hippocampal neurons after chemical exposure and impairs learning | Kassed | 2002 |
| ( | NF-kappaB p50 subunit knockout impairs late LTP and alters long term memory in the mouse hippocampus | Oikawa | 2012 |
| ( | c-Rel, an NF-kappaB family transcription factor, is required for hippocampal long-term synaptic plasticity and memory formation | Ahn | 2008 |
| ( | A bioinformatics analysis of memory consolidation reveals involvement of the transcription factor c-rel | Levenson | 2004 |
| ( | Regulation of nuclear factor kappaB in the hippocampus by group I metabotropic glutamate receptors | O'Riordan | 2006 |
| ( | NF-kappa B functions in synaptic signaling and behavior | Meffert | 2003 |
| ( | Late-Life Environmental Enrichment Induces Acetylation Events and Nuclear Factor kappaB-Dependent Regulations in the Hippocampus of Aged Rats Showing Improved Plasticity and Learning | Neidl | 2016 |
| ( | The IkappaB kinase regulates chromatin structure during reconsolidation of conditioned fear memories | Lubin | 2007 |
| ( | Forebrain-specific neuronal inhibition of nuclear factor-kappaB activity leads to loss of neuroprotection | Fridmacher | 2003 |
| ( | NF-kappaB/Rel regulates inhibitory and excitatory neuronal function and synaptic plasticity | O'Mahony | 2006 |
| ( | NF-kappaB transcription factor role in consolidation and reconsolidation of persistent memories | de la Fuente | 2015 |
| ( | Differential contributions of microglial and neuronal IKKbeta to synaptic plasticity and associative learning in alert behaving mice | Kyrargyri | 2015 |
| ( | A requirement for nuclear factor-kappaB in developmental and plasticity-associated synaptogenesis | Boersma | 2011 |
| ( | Opposing action of nuclear factor kappaB and Polo-like kinases determines a homeostatic end point for excitatory synaptic adaptation | Mihalas | 2013 |
| ( | Stimulation of ionotropic glutamate receptors activates transcription factor NF-kappa B in primary neurons | Kaltschmidt | 1995 |
| ( | Synaptic activation of NF-kappa B by glutamate in cerebellar granule neurons | Guerrini | 1995 |
| ( | Glutamate-dependent activation of NF-kappaB during mouse cerebellum development | Guerrini | 1997 |
| ( | Glutamate promotes NF-kappaB pathway in primary astrocytes: protective effects of IRFI 016, a synthetic vitamin E analog | Caccamo | 2005 |
| ( | Essential role for epidermal growth factor receptor in glutamate receptor signaling to NF-kappaB | Sitcheran | 2008 |
| ( | From calcium to NF-kappa B signaling pathways in neurons | Lilienbaum | 2003 |
| ( | Kainate receptors activate NF-kappaB via MAP kinase in striatal neurones | Cruise | 2000 |
| ( | Glutamate-induced NFkappaB activation in the retina | Fan | 2009 |
| ( | Stimulated nuclear translocation of NF-kappaB and shuttling differentially depend on dynein and the dynactin complex | Shrum | 2009 |
| ( | Single-particle tracking uncovers dynamics of glutamate-induced retrograde transport of NF-kappaB p65 in living neurons | Widera | 2016 |
| ( | Transcription factor NF-kappaB is transported to the nucleus via cytoplasmic dynein/dynactin motor complex in hippocampal neurons | Mikenberg | 2007 |
| ( | Brain synapses contain inducible forms of the transcription factor NF- kappa B | Kaltschmidt | 1993 |
| ( | Gene expression of the transcription factor NF-kappa B in hippocampus: regulation by synaptic activity | Meberg | 1996 |
| ( | Hippocampal dynamics of synaptic NF-kappa B during inhibitory avoidance long-term memory consolidation in mice | Salles | 2015 |
| ( | Targeting of NF-kappaB to Dendritic Spines Is Required for Synaptic Signaling and Spine Development | Dresselhaus | 2018 |
| ( | The Huntington's disease mutation impairs Huntingtin's role in the transport of NF-kappaB from the synapse to the nucleus | Marcora | 2010 |
| ( | NF-kappaB regulates neuronal ankyrin-G via a negative feedback loop | Konig | 2017 |
| ( | IkappaB kinase/nuclear factor kappaB-dependent insulin-like growth factor 2 (Igf2) expression regulates synapse formation and spine maturation via Igf2 receptor signaling | Schmeisser | 2012 |
| ( | NF-kappaB regulates spatial memory formation and synaptic plasticity through protein kinase A/CREB signaling | Kaltschmidt | 2006 |
| ( | Role of p300 in regulating neuronal nitric oxide synthase gene expression through nuclear factor-kappaB-mediated way in neuronal cells | Li | 2013 |
| ( | Constitutive nuclear factor-kappa B activity is required for central neuron survival | Bhakar | 2002 |
| ( | NF-kappaB activity in transgenic mice: developmental regulation and tissue specificity | Schmidt-Ullrich | 1996 |
| ( | Lymphotoxin beta receptor-mediated NFkappaB signaling promotes glial lineage differentiation and inhibits neuronal lineage differentiation in mouse brain neural stem/progenitor cells | Xiao | 2018 |
| ( | NFkappaB activation is required for the neuroprotective effects of pigment epithelium-derived factor (PEDF) on cerebellar granule neurons | Yabe | 2001 |
| ( | The canonical nuclear factor-kappaB pathway regulates cell survival in a developmental model of spinal cord motoneurons | Mincheva | 2011 |
| ( | The predominantly HEAT-like motif structure of huntingtin and its association and coincident nuclear entry with dorsal, an NF-kB/Rel/dorsal family transcription factor | Takano | 2002 |
| ( | A SNP in the HTT promoter alters NF-kappaB binding and is a bidirectional genetic modifier of Huntington disease | Becanovic | 2015 |
| ( | Regulation of Cu/Zn-superoxide dismutase expression via the phosphatidylinositol 3 kinase/Akt pathway and nuclear factor-kappaB | Rojo | 2004 |
| ( | Deregulation of TDP-43 in amyotrophic lateral sclerosis triggers nuclear factor kappaB-mediated pathogenic pathways | Swarup | 2011 |
| ( | Nuclear translocation of NF-kappaB is increased in dopaminergic neurons of patients with parkinson disease | Hunot | 1997 |
| ( | NF-kappaB factor c-Rel mediates neuroprotection elicited by mGlu5 receptor agonists against amyloid beta-peptide toxicity | Pizzi | 2005 |
| ( | Late-onset Parkinsonism in NFkappaB/c-Rel-deficient mice | Baiguera | 2012 |
| ( | Parkin mediates neuroprotection through activation of IkappaB kinase/nuclear factor-kappaB signaling | Henn | 2007 |
| ( | Phosphorylation of parkin by Parkinson disease-linked kinase PINK1 activates parkin E3 ligase function and NF-kappaB signaling | Sha | 2010 |
| ( | TRIM9-Mediated Resolution of Neuroinflammation Confers Neuroprotection upon Ischemic Stroke in Mice | Zeng | 2019 |
| ( | Differential contributions of microglial and neuronal IKKbeta to synaptic plasticity and associative learning in alert behaving mice | Kyrargyri | 2015 |
| ( | Regulation of inflammatory responses by neuregulin-1 in brain ischemia and microglial cells | Simmons | 2016 |
| ( | Nuclear factor-kappa B family member RelB inhibits human immunodeficiency virus-1 Tat-induced tumor necrosis factor-alpha production | Kiebala | 2010 |
| ( | Role of microglial IKKbeta in kainic acid-induced hippocampal neuronal cell death | Cho | 2008 |
| ( | A20 critically controls microglia activation and inhibits inflammasome-dependent neuroinflammation | Voet | 2018 |
| ( | Microglia promote learning-dependent synapse formation through brain-derived neurotrophic factor | Parkhurst | 2013 |
| ( | Microglia contact induces synapse formation in developing somatosensory cortex | Miyamoto | 2016 |
| ( | Divergent Neuroinflammatory Regulation of Microglial TREM Expression and Involvement of NF-kappaB | Owens | 2017 |
| ( | Genome-wide RNAseq study of the molecular mechanisms underlying microglia activation in response to pathological tau perturbation in the rTg4510 tau transgenic animal model | Wang | 2018 |
| ( | Deregulation of TDP-43 in amyotrophic lateral sclerosis triggers nuclear factor kappaB-mediated pathogenic pathways | Swarup | 2011 |
| ( | Microglia induce motor neuron death via the classical NF-kappaB pathway in amyotrophic lateral sclerosis | Frakes | 2014 |
| ( | NF-kappaB activation in astrocytes drives a stage-specific beneficial neuroimmunological response in ALS | Ouali Alami | 2018 |
| ( | Lymphotoxin beta receptor-mediated NFkappaB signaling promotes glial lineage differentiation and inhibits neuronal lineage differentiation in mouse brain neural stem/progenitor cells | Xiao | 2018 |
| ( | RelB controls adaptive responses of astrocytes during sterile inflammation | Gupta | 2019 |
| ( | Inhibition of astroglial nuclear factor kappaB reduces inflammation and improves functional recovery after spinal cord injury | Brambilla | 2005 |
| ( | Transgenic inhibition of astroglial NF-kappaB protects from optic nerve damage and retinal ganglion cell loss in experimental optic neuritis | Brambilla | 2012 |
| ( | Transgenic inhibition of astroglial NF-kappa B leads to increased axonal sparing and sprouting following spinal cord injury | Brambilla | 2009 |
| ( | Nuclear factor-kappaB contributes to neuron-dependent induction of glutamate transporter-1 expression in astrocytes | Ghosh | 2011 |
| ( | Astrocytic Process Plasticity and IKKbeta/NF-kappaB in Central Control of Blood Glucose, Blood Pressure, and Body Weight | Zhang | 2017 |
| ( | Astroglial nuclear factor-kappaB regulates learning and memory and synaptic plasticity in female mice | Bracchi-Ricard | 2008 |
| ( | NF-(kappa)B mediates amyloid beta peptide-stimulated activity of the human apolipoprotein E gene promoter in human astroglial cells | Du | 2005 |
| ( | A critical role of astrocyte-mediated nuclear factor-kappaB-dependent inflammation in Huntington's disease | Hsiao | 2013 |
| ( | Activation of the IkappaB kinase complex and nuclear factor-kappaB contributes to mutant huntingtin neurotoxicity | Khoshnan | 2004 |
| ( | Deregulation of TDP-43 in amyotrophic lateral sclerosis triggers nuclear factor kappaB-mediated pathogenic pathways | Swarup | 2011 |
| ( | NF-kappaB activation in astrocytes drives a stage-specific beneficial neuroimmunological response in ALS | Ouali Alami | 2018 |
| ( | Selective inhibition of NF-kappaB activation prevents dopaminergic neuronal loss in a mouse model of Parkinson's disease | Ghosh | 2007 |
Only references implicating or investigating specific cell types are included. Full reference information can be found in the bibliography of this article.