Instytut Podstawowych Problemów Techniki
Polskiej Akademii Nauk

Partnerzy

A. Jackson Dean


Ostatnie publikacje
1.  Downton P., Bagnall James S., England H., Spiller David G., Humphreys Neil E., Jackson Dean A., Paszek P., White Michael R.R., Adamson Antony D., Overexpression of IκB⍺ modulates NF-κB activation of inflammatory target gene expression, Frontiers in Molecular Biosciences, ISSN: 2296-889X, DOI: 10.3389/fmolb.2023.1187187, Vol.10, pp.1187187-1-15, 2023

Streszczenie:
Cells respond to inflammatory stimuli such as cytokines by activation of the nuclear factor-κB (NF-κB) signalling pathway, resulting in oscillatory translocation of the transcription factor p65 between nucleus and cytoplasm in some cell types. We investigate the relationship between p65 and inhibitor-κB⍺ (IκBα) protein levels and dynamic properties of the system, and how this interaction impacts on the expression of key inflammatory genes. Using bacterial artificial chromosomes, we developed new cell models of IκB⍺-eGFP protein overexpression in a pseudo-native genomic context. We find that cells with high levels of the negative regulator IκBα remain responsive to inflammatory stimuli and maintain dynamics for both p65 and IκBα. In contrast, canonical target gene expression is dramatically reduced by overexpression of IκBα, but can be partially rescued by overexpression of p65. Treatment with leptomycin B to promote nuclear accumulation of IκB⍺ also suppresses canonical target gene expression, suggesting a mechanism in which nuclear IκB⍺ accumulation prevents productive p65 interaction with promoter binding sites. This causes reduced target promoter binding and gene transcription, which we validate by chromatin immunoprecipitation and in primary cells. Overall, we show how inflammatory gene transcription is modulated by the expression levels of both IκB⍺ and p65. This results in an anti-inflammatory effect on transcription, demonstrating a broad mechanism to modulate the strength of inflammatory response.

Słowa kluczowe:
NF-κB, inflammation, IκB⍺, overexpression, gene expression, localisation

Afiliacje autorów:
Downton P. - inna afiliacja
Bagnall James S. - inna afiliacja
England H. - inna afiliacja
Spiller David G. - inna afiliacja
Humphreys Neil E. - inna afiliacja
Jackson Dean A. - inna afiliacja
Paszek P. - IPPT PAN
White Michael R.R. - University of Manchester (GB)
Adamson Antony D. - inna afiliacja
140p.
2.  Bagnall J., Rowe W., Alachkar N., Roberts J., England H., Clark C., Platt M., Jackson Dean A., Muldoon M., Paszek P., Gene-Specific Linear Trends Constrain Transcriptional Variability of the Toll-like Receptor Signaling, Cell Systems, ISSN: 2405-4712, DOI: 10.1016/j.cels.2020.08.007, Vol.11, No.3, pp.300-314, 2020

Streszczenie:
Single-cell gene expression is inherently variable, but how this variability is controlled in response to stimulation remains unclear. Here, we use single-cell RNA-seq and single-molecule mRNA counting (smFISH) to study inducible gene expression in the immune toll-like receptor system. We show that mRNA counts of tumor necrosis factor α conform to a standard stochastic switch model, while transcription of interleukin-1β involves an additional regulatory step resulting in increased heterogeneity. Despite different modes of regulation, systematic analysis of single-cell data for a range of genes demonstrates that the variability in transcript count is linearly constrained by the mean response over a range of conditions. Mathematical modeling of smFISH counts and experimental perturbation of chromatin state demonstrates that linear constraints emerge through modulation of transcriptional bursting along with gene-specific relationships. Overall, our analyses demonstrate that the variability of the inducible single-cell mRNA response is constrained by transcriptional bursting.

Słowa kluczowe:
cellular heterogeneity, transcriptional bursting, stochastic gene expression, toll-like receptor, single-cell transcriptomics, stochastic modeling, TNF-α, IL-1β

Afiliacje autorów:
Bagnall J. - inna afiliacja
Rowe W. - inna afiliacja
Alachkar N. - inna afiliacja
Roberts J. - inna afiliacja
England H. - inna afiliacja
Clark C. - inna afiliacja
Platt M. - inna afiliacja
Jackson Dean A. - inna afiliacja
Muldoon M. - inna afiliacja
Paszek P. - inna afiliacja
200p.
3.  Papoutsopoulou S., Burkitt Michael D., Bergey F., England H., Hough R., Schmidt L., Spiller David G., White Michael H. R.R., Paszek P., Jackson Dean A., Martins Dos Santos Vitor A. P., Sellge G., Pritchard D. M., Campbell Barry J., Müller W., Probert Chris S., Macrophage-Specific NF-κB Activation Dynamics Can Segregate Inflammatory Bowel Disease Patients, Frontiers in Immunology, ISSN: 1664-3224, DOI: 10.3389/fimmu.2019.02168, Vol.10, pp.2168-1-11, 2019

Streszczenie:
The heterogeneous nature of inflammatory bowel disease (IBD) presents challenges, particularly when choosing therapy. Activation of the NF-κB transcription factor is a highly regulated, dynamic event in IBD pathogenesis. Using a lentivirus approach, NF-κB-regulated luciferase was expressed in patient macrophages, isolated from frozen peripheral blood mononuclear cell samples. Following activation, samples could be segregated into three clusters based on the NF-κB-regulated luciferase response. The ulcerative colitis (UC) samples appeared only in the hypo-responsive Cluster 1, and in Cluster 2. Conversely, Crohn's disease (CD) patients appeared in all Clusters with their percentage being higher in the hyper-responsive Cluster 3. A positive correlation was seen between NF-κB-induced luciferase activity and the concentrations of cytokines released into medium from stimulated macrophages, but not with serum or biopsy cytokine levels. Confocal imaging of lentivirally-expressed p65 activation revealed that a higher proportion of macrophages from CD patients responded to endotoxin lipid A compared to controls. In contrast, cells from UC patients exhibited a shorter duration of NF-κB p65 subunit nuclear localization compared to healthy controls, and CD donors. Analysis of macrophage cytokine responses and patient metadata revealed a strong correlation between CD patients who smoked and hyper-activation of p65. These in vitro dynamic assays of NF-κB activation in blood-derived macrophages have the potential to segregate IBD patients into groups with different phenotypes and may therefore help determine response to therapy.

Słowa kluczowe:
inflammatory bowel disease, NF-kB, macrophages, cytokines, Crohn’s disease, ulcerative colitis

Afiliacje autorów:
Papoutsopoulou S. - inna afiliacja
Burkitt Michael D. - inna afiliacja
Bergey F. - inna afiliacja
England H. - inna afiliacja
Hough R. - inna afiliacja
Schmidt L. - inna afiliacja
Spiller David G. - inna afiliacja
White Michael H. R.R. - University of Manchester (GB)
Paszek P. - inna afiliacja
Jackson Dean A. - inna afiliacja
Martins Dos Santos Vitor A. P. - inna afiliacja
Sellge G. - inna afiliacja
Pritchard D. M. - inna afiliacja
Campbell Barry J. - inna afiliacja
Müller W. - inna afiliacja
Probert Chris S. - inna afiliacja
4.  Bagnall J., Boddington C., England H., Brignall R., Downton P., Alsoufi Z., Boyd J., Rowe W., Bennett A., Walker C., Adamson A., Patel Nisha M. X., O’Cualain R., Schmidt L., Spiller David G., Jackson Dean A., Müller W., Muldoon M., White Michael R. H.R., Paszek P., Quantitative analysis of competitive cytokine signaling predicts tissue thresholds for the propagation of macrophage activation, Science Signaling, ISSN: 1945-0877, DOI: 10.1126/scisignal.aaf3998, Vol.11, No.540, pp.1-15, 2018

Streszczenie:
Toll-like receptor (TLR) signaling regulates macrophage activation and effector cytokine propagation in the constrained environment of a tissue. In macrophage populations, TLR4 stimulates the dose-dependent transcription of nuclear factor κB (NF-κB) target genes. However, using single-RNA counting, we found that individual cells exhibited a wide range (three orders of magnitude) of expression of the gene encoding the proinflammatory cytokine tumor necrosis factor–α (TNF-α). The TLR4-induced TNFA transcriptional response correlated with the extent of NF-κB signaling in the cells and their size. We compared the rates of TNF-α production and uptake in macrophages and mouse embryonic fibroblasts and generated a mathematical model to explore the heterogeneity in the response of macrophages to TLR4 stimulation and the propagation of the TNF-α signal in the tissue. The model predicts that the local propagation of the TLR4-dependent TNF-α response and cellular NF-κB signaling are limited to small distances of a few cell diameters between neighboring tissue-resident macrophages. In our predictive model, TNF-α propagation was constrained by competitive uptake of TNF-α from the environment, rather than by heterogeneous production of the cytokine. We propose that the highly constrained architecture of tissues enables effective localized propagation of inflammatory cues while avoiding out-of-context responses at longer distances.

Afiliacje autorów:
Bagnall J. - inna afiliacja
Boddington C. - inna afiliacja
England H. - inna afiliacja
Brignall R. - inna afiliacja
Downton P. - inna afiliacja
Alsoufi Z. - inna afiliacja
Boyd J. - inna afiliacja
Rowe W. - inna afiliacja
Bennett A. - inna afiliacja
Walker C. - inna afiliacja
Adamson A. - inna afiliacja
Patel Nisha M. X. - inna afiliacja
O’Cualain R. - inna afiliacja
Schmidt L. - inna afiliacja
Spiller David G. - inna afiliacja
Jackson Dean A. - inna afiliacja
Müller W. - inna afiliacja
Muldoon M. - inna afiliacja
White Michael R. H.R. - University of Manchester (GB)
Paszek P. - inna afiliacja
40p.
5.  Brignall R., Cauchy P., Bevington Sarah L., Gorman B., Pisco Angela O., Bagnall J., Boddington C., Rowe W., England H., Rich K., Schmidt L., Dyer Nigel P., Travis Mark A., Ott S., Jackson Dean A., Cockerill Peter N., Paszek P., Integration of Kinase and Calcium Signaling at the Level of Chromatin Underlies Inducible Gene Activation in T Cells, JOURNAL OF IMMUNOLOGY, ISSN: 0022-1767, DOI: 10.4049/jimmunol.1602033, Vol.199, No.8, pp.2652-2667, 2017

Streszczenie:
TCR signaling pathways cooperate to activate the inducible transcription factors NF-κB, NFAT, and AP-1. In this study, using the calcium ionophore ionomycin and/or PMA on Jurkat T cells, we show that the gene expression program associated with activation of TCR signaling is closely related to specific chromatin landscapes. We find that calcium and kinase signaling cooperate to induce chromatin remodeling at ∼2100 chromatin regions, which demonstrate enriched binding motifs for inducible factors and correlate with target gene expression. We found that these regions typically function as inducible enhancers. Many of these elements contain composite NFAT/AP-1 sites, which typically support cooperative binding, thus further reinforcing the need for cooperation between calcium and kinase signaling in the activation of genes in T cells. In contrast, treatment with PMA or ionomycin alone induces chromatin remodeling at far fewer regions (∼600 and ∼350, respectively), which mostly represent a subset of those induced by costimulation. This suggests that the integration of TCR signaling largely occurs at the level of chromatin, which we propose plays a crucial role in regulating T cell activation.

Afiliacje autorów:
Brignall R. - inna afiliacja
Cauchy P. - inna afiliacja
Bevington Sarah L. - inna afiliacja
Gorman B. - inna afiliacja
Pisco Angela O. - inna afiliacja
Bagnall J. - inna afiliacja
Boddington C. - inna afiliacja
Rowe W. - inna afiliacja
England H. - inna afiliacja
Rich K. - inna afiliacja
Schmidt L. - inna afiliacja
Dyer Nigel P. - inna afiliacja
Travis Mark A. - inna afiliacja
Ott S. - inna afiliacja
Jackson Dean A. - inna afiliacja
Cockerill Peter N. - inna afiliacja
Paszek P. - inna afiliacja
6.  Adamson A., Boddington C., Downton P., Rowe W., Bagnall J., Lam C., Maya-Mendoza A., Schmidt L., Harper Claire V.V., Spiller David G., Rand David A.A., Jackson Dean A., White Michael R. H.R., Paszek P., Signal transduction controls heterogeneous NF-κB dynamics and target gene expression through cytokine-specific refractory states, Nature Communications, ISSN: 2041-1723, DOI: 10.1038/ncomms12057, Vol.7, pp.12057-1-14, 2016

Streszczenie:
Cells respond dynamically to pulsatile cytokine stimulation. Here we report that single, or well-spaced pulses of TNFα (>100 min apart) give a high probability of NF-κB activation. However, fewer cells respond to shorter pulse intervals (<100 min) suggesting a heterogeneous refractory state. This refractory state is established in the signal transduction network downstream of TNFR and upstream of IKK, and depends on the level of the NF-κB system negative feedback protein A20. If a second pulse within the refractory phase is IL-1β instead of TNFα, all of the cells respond. This suggests a mechanism by which two cytokines can synergistically activate an inflammatory response. Gene expression analyses show strong correlation between the cellular dynamic response and NF-κB-dependent target gene activation. These data suggest that refractory states in the NF-κB system constitute an inherent design motif of the inflammatory response and we suggest that this may avoid harmful homogenous cellular activation.

Afiliacje autorów:
Adamson A. - inna afiliacja
Boddington C. - inna afiliacja
Downton P. - inna afiliacja
Rowe W. - inna afiliacja
Bagnall J. - inna afiliacja
Lam C. - inna afiliacja
Maya-Mendoza A. - inna afiliacja
Schmidt L. - inna afiliacja
Harper Claire V.V. - University of Manchester (GB)
Spiller David G. - inna afiliacja
Rand David A.A. - University of Warwick (GB)
Jackson Dean A. - inna afiliacja
White Michael R. H.R. - University of Manchester (GB)
Paszek P. - inna afiliacja
45p.
7.  Ankers John M., Awais R., Jones Nicholas A., Boyd J., Ryan S., Adamson Antony D., Harper Claire V.V., Bridge L., Spiller David G., Jackson Dean A., Paszek P., Sée V., White Michael R.R., Dynamic NF-κB and E2F interactions control the priority and timing of inflammatory signalling and cell proliferation, eLife, ISSN: 2050-084X, DOI: 10.7554/eLife.10473, Vol.5, pp.e10473-1-35, 2016

Streszczenie:
Dynamic cellular systems reprogram gene expression to ensure appropriate cellular fate responses to specific extracellular cues. Here we demonstrate that the dynamics of Nuclear Factor kappa B (NF-κB) signalling and the cell cycle are prioritised differently depending on the timing of an inflammatory signal. Using iterative experimental and computational analyses, we show physical and functional interactions between NF-κB and the E2 Factor 1 (E2F-1) and E2 Factor 4 (E2F-4) cell cycle regulators. These interactions modulate the NF-κB response. In S-phase, the NF-κB response was delayed or repressed, while cell cycle progression was unimpeded. By contrast, activation of NF-κB at the G1/S boundary resulted in a longer cell cycle and more synchronous initial NF-κB responses between cells. These data identify new mechanisms by which the cellular response to stress is differentially controlled at different stages of the cell cycle.

Afiliacje autorów:
Ankers John M. - inna afiliacja
Awais R. - inna afiliacja
Jones Nicholas A. - Massachusetts Institute of Technology (US)
Boyd J. - inna afiliacja
Ryan S. - inna afiliacja
Adamson Antony D. - inna afiliacja
Harper Claire V.V. - University of Manchester (GB)
Bridge L. - inna afiliacja
Spiller David G. - inna afiliacja
Jackson Dean A. - inna afiliacja
Paszek P. - inna afiliacja
Sée V. - inna afiliacja
White Michael R.R. - University of Manchester (GB)
8.  Paszek P., Jackson Dean A., White M., Oscillatory control of signalling molecules, Current Opinion in Genetics & Development, ISSN: 0959-437X, DOI: 10.1016/j.gde.2010.08.004, Vol.20, No.6, pp.670-676, 2010

Streszczenie:
The emergence of biological function from the dynamic control of cellular signalling molecules is a fundamental process in biology. Key questions include: How do cells decipher noisy environmental cues, encode these signals to control fate decisions and propagate information through tissues? Recent advances in systems biology, and molecular and cellular biology, exemplified by analyses of signalling via the transcription factor Nuclear Factor kappaB (NF-κB), reveal a critical role of oscillatory control in the regulation of these biological functions. The emerging view is that the oscillatory dynamics of signalling molecules and the epigenetically regulated specificity for target genes contribute to robust regulation of biological function at different levels of cellular organisation through frequency-dependent information encoding.

Previous article in issue

Afiliacje autorów:
Paszek P. - IPPT PAN
Jackson Dean A. - inna afiliacja
White M. - inna afiliacja

Kategoria A Plus

IPPT PAN

logo ippt            ul. Pawińskiego 5B, 02-106 Warszawa
  +48 22 826 12 81 (centrala)
  +48 22 826 98 15
 

Znajdź nas

mapka
© Instytut Podstawowych Problemów Techniki Polskiej Akademii Nauk 2024