Javascript must be enabled to continue!
Bi-directional regulation between NAD/NAMPT and IFN-γ/PD-L1 axes via BRD4/IRF1 and mitochondrial respiration in metastatic cutaneous melanoma
View through CrossRef
Abstract
Background
Metastatic cutaneous melanoma (MCM) is primarily treated with BRAF/MEK inhibitors and immune checkpoint inhibitors (ICIs), but the long-term efficacy of these therapies is often limited by acquired resistance. Nicotinamide phosphoribosyltransferase (NAMPT), the rate-limiting enzyme in NAD biosynthesis, is frequently upregulated in MCM, supporting metabolic rewiring and targeted therapy resistance.
Interferon-γ (IFN-γ) signaling plays a central role in melanoma biology, exerting both antitumor and immunoregulatory effects, linked with the onset of therapeutic resistance. Emerging evidence suggests that metabolic pathways may critically modulate IFN-γ responses; however, the functional interplay between NAD/NAMPT metabolism and IFN-γ signaling in melanoma cells remains poorly defined.
Methods
We integrated transcriptomic, bioinformatic, biochemical, and functional approaches in human and murine melanoma cell lines, together with analyses of TCGA datasets and a tissue microarray (TMA) cohort. Mechanistic studies included pharmacological and genetic perturbation of Bromodomain and Extra-Terminal motif (BET) epigenetic factor BRD4, Interferon Regulatory Factor 1 (IRF1), and NAMPT, chromatin immunoprecipitation (ChIP) assays, and metabolic analyses. Tumor-T cell co-culture systems were used to assess the impact of melanoma-cell NAMPT modulation on T-cell behavior.
Results
IFN-γ induced NAMPT expression through a BRD4/IRF1-dependent transcriptional program. In turn, NAMPT activity was required to sustain IFN-γ signaling, as its inhibition impaired STAT1 activation and downstream transcriptional responses. Mechanistically, NAMPT-dependent NAD metabolism supported mitochondrial complex I activity and oxidative metabolism and was required for efficient BRD4 recruitment to IFN-responsive promoters, including CD274/PD-L1 and NAMPT itself. Across melanoma datasets and patient samples, NAMPT expression correlated with IFN-γ–responsive genes, including PD-L1. Functionally, modulation of NAMPT in melanoma cells influenced T-cell cytotoxicity and migration in co-culture systems.
Conclusions
Overall, these findings identify NAMPT as a key metabolic component of the IFN-γ response network in melanoma cells, establishing a feed-forward regulatory circuit linking cytokine signaling, chromatin regulation, and mitochondrial metabolism. This work provides a framework to investigate how metabolic control of IFN-γ signaling shapes tumor-immune interactions.
Springer Science and Business Media LLC
Irene Fiorilla
Beatrice Ghezzi
Alessia Ponzano
Enrico Moiso
Federica Riccardo
Nicoletta Tommasi
Lidia Avalle
Giovanna Carrà
Filippo Ugolini
Edoardo Calussi
Alberto Maria Todesco
Sabrina Digiovanni
Filippo Casone
Giulia Rizza
Luca Ponzone
Anna Szumera-Ciećkiewicz
Maria Cavaletto
Paolo Ettore Porporato
Laura Conti
Chiara Riganti
Daniela Massi
Enzo Calautti
Valentina Audrito
Title: Bi-directional regulation between NAD/NAMPT and IFN-γ/PD-L1 axes via BRD4/IRF1 and mitochondrial respiration in metastatic cutaneous melanoma
Description:
Abstract
Background
Metastatic cutaneous melanoma (MCM) is primarily treated with BRAF/MEK inhibitors and immune checkpoint inhibitors (ICIs), but the long-term efficacy of these therapies is often limited by acquired resistance.
Nicotinamide phosphoribosyltransferase (NAMPT), the rate-limiting enzyme in NAD biosynthesis, is frequently upregulated in MCM, supporting metabolic rewiring and targeted therapy resistance.
Interferon-γ (IFN-γ) signaling plays a central role in melanoma biology, exerting both antitumor and immunoregulatory effects, linked with the onset of therapeutic resistance.
Emerging evidence suggests that metabolic pathways may critically modulate IFN-γ responses; however, the functional interplay between NAD/NAMPT metabolism and IFN-γ signaling in melanoma cells remains poorly defined.
Methods
We integrated transcriptomic, bioinformatic, biochemical, and functional approaches in human and murine melanoma cell lines, together with analyses of TCGA datasets and a tissue microarray (TMA) cohort.
Mechanistic studies included pharmacological and genetic perturbation of Bromodomain and Extra-Terminal motif (BET) epigenetic factor BRD4, Interferon Regulatory Factor 1 (IRF1), and NAMPT, chromatin immunoprecipitation (ChIP) assays, and metabolic analyses.
Tumor-T cell co-culture systems were used to assess the impact of melanoma-cell NAMPT modulation on T-cell behavior.
Results
IFN-γ induced NAMPT expression through a BRD4/IRF1-dependent transcriptional program.
In turn, NAMPT activity was required to sustain IFN-γ signaling, as its inhibition impaired STAT1 activation and downstream transcriptional responses.
Mechanistically, NAMPT-dependent NAD metabolism supported mitochondrial complex I activity and oxidative metabolism and was required for efficient BRD4 recruitment to IFN-responsive promoters, including CD274/PD-L1 and NAMPT itself.
Across melanoma datasets and patient samples, NAMPT expression correlated with IFN-γ–responsive genes, including PD-L1.
Functionally, modulation of NAMPT in melanoma cells influenced T-cell cytotoxicity and migration in co-culture systems.
Conclusions
Overall, these findings identify NAMPT as a key metabolic component of the IFN-γ response network in melanoma cells, establishing a feed-forward regulatory circuit linking cytokine signaling, chromatin regulation, and mitochondrial metabolism.
This work provides a framework to investigate how metabolic control of IFN-γ signaling shapes tumor-immune interactions.
Related Results
Abstract 4283: NAMPT-enriched small extracellular vesicle promotes liver cancer via activation of SLC27A4-mediated glycolysis
Abstract 4283: NAMPT-enriched small extracellular vesicle promotes liver cancer via activation of SLC27A4-mediated glycolysis
Abstract
Introduction: Tumor-derived small extracellular vesicles (sEV) act as a major mediator of the tumor microenvironment (TME) and are reported to regulate vari...
Iminosugar C-glycosides as new NAMPT inhibitors and anti-cancer agents
Iminosugar C-glycosides as new NAMPT inhibitors and anti-cancer agents
C-glycosides d'iminosucres : nouveaux inhibiteurs de NAMPT et anticancéreux
La nicotinamide phosphoribosyltransférase (NAMPT) est l'enzyme limitant la vitesse de sy...
Mitochondrial NAD Profile in a Rat Model of Attention-Deficit/Hyperactivity Disorder
Mitochondrial NAD Profile in a Rat Model of Attention-Deficit/Hyperactivity Disorder
Mitochondria require nicotinamide adenine dinucleotide (NAD) to satisfy cellular energy needs. Mitochondrial stress has been reported in skeletal muscle tissue of humans with atten...
Data from Targeting of NAD Metabolism in Pancreatic Cancer Cells: Potential Novel Therapy for Pancreatic Tumors
Data from Targeting of NAD Metabolism in Pancreatic Cancer Cells: Potential Novel Therapy for Pancreatic Tumors
<div>Abstract<p><b>Purpose:</b> Here, we describe a novel interplay between NAD synthesis and degradation involved in pancreatic tumor growth.</p><...
Data from Targeting of NAD Metabolism in Pancreatic Cancer Cells: Potential Novel Therapy for Pancreatic Tumors
Data from Targeting of NAD Metabolism in Pancreatic Cancer Cells: Potential Novel Therapy for Pancreatic Tumors
<div>Abstract<p><b>Purpose:</b> Here, we describe a novel interplay between NAD synthesis and degradation involved in pancreatic tumor growth.</p><...
BRD4 isoforms have distinct roles in tumor progression and metastasis in embryonal rhabdomyosarcoma
BRD4 isoforms have distinct roles in tumor progression and metastasis in embryonal rhabdomyosarcoma
ABSTRACTBRD4, a bromodomain and extraterminal (BET) protein, is deregulated in multiple cancers and has emerged as a promising drug target. However, the function of the two main BR...
Grape Seed Proanthocyanindin Extract Moderated Retinal Pigment Epithelium Cellular Senescence Through NAMPT/SIRT1/NLRP3 Pathway
Grape Seed Proanthocyanindin Extract Moderated Retinal Pigment Epithelium Cellular Senescence Through NAMPT/SIRT1/NLRP3 Pathway
Abstract
Background: Cellular senescence of retinal pigment epithelium (RPE) cell was an important cause of degenerative retinal disorders, however, the potential effects o...
Abstract 971: Chaperone-mediated protein degradation (CHAMP): A novel technology for tumor-targeted protein degradation
Abstract 971: Chaperone-mediated protein degradation (CHAMP): A novel technology for tumor-targeted protein degradation
Abstract
The HSP90 chaperone mediates folding of many important client proteins and mutated oncoproteins, but can also direct its substrates towards degradation by t...

