Dopamine-driven Increase in IL-1β in Myeloid Cells is Mediated by Differential Dopamine Receptor Expression and Exacerbated by HIV
Matt, S.; Nolan, R.; Manikandan, S.; Agarwal, Y.; Channer, B.; Oteju, O.; Daniali, M.; Canagarajah, J. A.; LuPone, T.; Mompho, K.; Runner, K.; Nickoloff-Bybel, E.; Li, B.; Niu, M.; Schlachetzki, J.; Fox, H.; Gaskill, P. J.
Show abstract
The catecholamine neurotransmitter dopamine is classically known for regulation of central nervous system (CNS) functions such as reward, movement, and cognition. Increasing evidence also indicates that dopamine regulates critical functions in peripheral organs and is an important immunoregulatory factor. We have previously shown that dopamine increases NF-{kappa}B activity, inflammasome activation, and the production of inflammatory cytokines such as IL-1{beta} in human macrophages. As myeloid lineage cells are central to the initiation and resolution of acute inflammatory responses, dopamine-mediated dysregulation of these functions could both impair the innate immune response and exacerbate chronic inflammation. However, the exact pathways by which dopamine drives myeloid inflammation are not well defined, and studies in both rodent and human systems indicate that dopamine can impact the production of inflammatory mediators through both D1-like dopamine receptors (DRD1, DRD5) and D2-like dopamine receptors (DRD2, DRD3, and DRD4). Therefore, we hypothesized that dopamine-mediated production of IL-1{beta} in myeloid cells is regulated by the ratio of different dopamine receptors that are activated. Our data in primary human monocyte-derived macrophages (hMDM) indicate that DRD1 expression is necessary for dopamine-mediated increases in IL-1{beta}, and that changes in the expression of DRD2 and other dopamine receptors can alter the magnitude of the dopamine-mediated increase in IL-1{beta}. Mature hMDM have a high D1-like to D2-like receptor ratio, which is different relative to monocytes and peripheral blood mononuclear cells (PBMCs). We further confirm in human microglia cell lines that a high ratio of D1-like to D2-like receptors promotes dopamine-induced increases in IL-1{beta} gene and protein expression using pharmacological inhibition or overexpression of dopamine receptors. RNA-sequencing of dopamine-treated microglia shows that genes encoding functions in IL-1{beta} signaling pathways, microglia activation, and neurotransmission increased with dopamine treatment. Finally, using HIV as an example of a chronic inflammatory disease that is substantively worsened by comorbid substance use disorders (SUDs) that impact dopaminergic signaling, we show increased effects of dopamine on inflammasome activation and IL-1{beta} in the presence of HIV in both human macrophages and microglia. These data suggest that use of addictive substances and dopamine-modulating therapeutics could dysregulate the innate inflammatory response and exacerbate chronic neuroimmunological conditions like HIV. Thus, a detailed understanding of dopamine-mediated changes in inflammation, in particular pathways regulating IL-1{beta}, will be critical to effectively tailor medication regimens.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Microglial adipose triglyceride lipase regulates neuroinflammatory and behavioural responses to LPS 95%
- Transcriptomic and functional analysis of Aβ1-42 oligomer-stimulated human monocyte-derived microglia-like cells 95%
- Transcriptional and Cellular Response of hiPSC-derived Microglia-Neural Progenitor Co-Cultures Exposed to IL-6 95%
Similar papers in this journal
- Inhibition of microglial GBA hampers the microglia-mediated anti-oxidant and protective response in neurons 95%
- RGS10 Attenuates Systemic Immune Dysregulation Induced by Chronic Inflammatory Stress 94%
- Metabolic reprogramming and altered ATP content impair neuroprotective functions of microglia in β-glucocerebrosidase deficiency models 94%
Similar papers in this journal
- Constitutively active STING causes neuroinflammation and degeneration of dopaminergic neurons in mice 94%
- The LRRK2 G2019S mutation alters astrocyte-to-neuron communication via extracellular vesicles and induces neuron atrophy in a human iPSC-derived model of Parkinson's disease 94%
- SNORD90 induces glutamatergic signaling following treatment with monoaminergic antidepressants 93%
Similar papers in this journal
- Organelle phenotyping and multi-dimensional microscopy identify C1q as a novel regulator of microglial function. 95%
- Botulinum Neurotoxin A1 Signaling in Pain Modulation within Human Sensory Neurons 94%
- A novel histone deacetylase inhibitor-based approach to eliminate microglia and retain astrocyte properties in glial cell culture. 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.