Purpose: Psoriasis is a chronic inflammatory skin disease characterized by hyperproliferative keratinocytes and activated Th17/Th1 lymphocytes, which sustain a self-perpetuating cycle by releasing pro-inflammatory cytokines. The RNA-binding protein (RBP) Human Antigen R (HuR) stabilizes many of these cytokine mRNAs, contributing to disease progression. This study aims to investigate the role of the HuR protein in psoriasis and modulate its activity to develop novel therapeutic strategies. Patients and methods: We evaluated the effects of Human Antigen R (HuR) silencing on psoriatic markers in both patient-derived keratinocytes and lymphocytes. Furthermore, we identified novel HuR targets within a psoriatic context using enhanced Cross-Linking and ImmunoPrecipitation sequencing (eCLIP-seq) in psoriasis-like HaCaT cells. Finally, we investigated the pharmacological effects of the TM11, a Tanshinone-mimic (TM) molecule, in an in vivo mouse model and an ex vivo 3D human skin model. Results: Studies on HuR function in HaCaT cells and in patient-derived primary keratinocytes and lymphocytes, demonstrated that keratinocyte proliferation and lymphocyte activation and differentiation are both dependent on HuR. In psoriatic-like HaCaT cells, eCLIP-seq data identified novel psoriatic-related HuR targets, and its mRNA-stabilizing activity was confirmed. Treatment with TM11, that competes with HuR-mRNA binding, reduced keratinocyte proliferation and psoriasis proteins (Cyclin B, Survivin, S100A7, eFABP), and almost suppressed T-cell activation (CD25⁺CD69⁺) and Th17/Th1 cytokine production. In vivo, TM11 reduced psoriasis-like symptoms in Imiquimod-treated mice, reducing Psoriasis Area and Severity Index (PASI) scores, systemic inflammation and histological alterations. In ex vivo InflammaSkin® models, TM11 restored epidermal morphology, decreased Ki-67 positive cells and lowered IL17AF and IFN-γ secretion. Conclusion: Overall, these findings highlight HuR as a key driver of psoriasis pathogenesis and provide preclinical evidence that pharmacological modulation of HuR activity, by TM11 treatment, could provide a conceptual therapeutic rationale for psoriasis, potentially contributing to the reduction of keratinocyte hyperproliferation and immune activation while favouring the restoration of skin homeostasis. However, further preclinical and clinical validation will be required to establish its translational feasibility.

Inhibiting HuR-Mediated mRNA Stabilization Attenuates Psoriasis-Like Inflammation in Preclinical Models / Paladino, D., Atene, C.G., Paganin, M., Palazzo, E., Quadri, M., Marconi, A., Tace, D., Lazzari, L., Trombetta, E., Roccuzzo, M., Tornese, M., Faiulo, A., Reggiani Bonetti, L., Manfredini, M., Nazzaro, G., Marzano, A.V., Arosio, D., Seneci, P., Provenzani, A., D'Agostino, V.G., et al.. - In: PSORIASIS. - ISSN 2230-326X. - 16:(2026), pp. 1-18. [10.2147/ptt.s627030]

Inhibiting HuR-Mediated mRNA Stabilization Attenuates Psoriasis-Like Inflammation in Preclinical Models

Paladino, Dalila;Paganin, Martina;Roccuzzo, Michela;Seneci, Pierfausto;Provenzani, Alessandro
;
D'Agostino, Vito G.
;
2026-01-01

Abstract

Purpose: Psoriasis is a chronic inflammatory skin disease characterized by hyperproliferative keratinocytes and activated Th17/Th1 lymphocytes, which sustain a self-perpetuating cycle by releasing pro-inflammatory cytokines. The RNA-binding protein (RBP) Human Antigen R (HuR) stabilizes many of these cytokine mRNAs, contributing to disease progression. This study aims to investigate the role of the HuR protein in psoriasis and modulate its activity to develop novel therapeutic strategies. Patients and methods: We evaluated the effects of Human Antigen R (HuR) silencing on psoriatic markers in both patient-derived keratinocytes and lymphocytes. Furthermore, we identified novel HuR targets within a psoriatic context using enhanced Cross-Linking and ImmunoPrecipitation sequencing (eCLIP-seq) in psoriasis-like HaCaT cells. Finally, we investigated the pharmacological effects of the TM11, a Tanshinone-mimic (TM) molecule, in an in vivo mouse model and an ex vivo 3D human skin model. Results: Studies on HuR function in HaCaT cells and in patient-derived primary keratinocytes and lymphocytes, demonstrated that keratinocyte proliferation and lymphocyte activation and differentiation are both dependent on HuR. In psoriatic-like HaCaT cells, eCLIP-seq data identified novel psoriatic-related HuR targets, and its mRNA-stabilizing activity was confirmed. Treatment with TM11, that competes with HuR-mRNA binding, reduced keratinocyte proliferation and psoriasis proteins (Cyclin B, Survivin, S100A7, eFABP), and almost suppressed T-cell activation (CD25⁺CD69⁺) and Th17/Th1 cytokine production. In vivo, TM11 reduced psoriasis-like symptoms in Imiquimod-treated mice, reducing Psoriasis Area and Severity Index (PASI) scores, systemic inflammation and histological alterations. In ex vivo InflammaSkin® models, TM11 restored epidermal morphology, decreased Ki-67 positive cells and lowered IL17AF and IFN-γ secretion. Conclusion: Overall, these findings highlight HuR as a key driver of psoriasis pathogenesis and provide preclinical evidence that pharmacological modulation of HuR activity, by TM11 treatment, could provide a conceptual therapeutic rationale for psoriasis, potentially contributing to the reduction of keratinocyte hyperproliferation and immune activation while favouring the restoration of skin homeostasis. However, further preclinical and clinical validation will be required to establish its translational feasibility.
2026
Paladino, Dalila; Atene, Claudio G; Paganin, Martina; Palazzo, Elisabetta; Quadri, Marika; Marconi, Alessandra; Tace, Dorian; Lazzari, Lorenza; Trombe...espandi
Inhibiting HuR-Mediated mRNA Stabilization Attenuates Psoriasis-Like Inflammation in Preclinical Models / Paladino, D., Atene, C.G., Paganin, M., Palazzo, E., Quadri, M., Marconi, A., Tace, D., Lazzari, L., Trombetta, E., Roccuzzo, M., Tornese, M., Faiulo, A., Reggiani Bonetti, L., Manfredini, M., Nazzaro, G., Marzano, A.V., Arosio, D., Seneci, P., Provenzani, A., D'Agostino, V.G., et al.. - In: PSORIASIS. - ISSN 2230-326X. - 16:(2026), pp. 1-18. [10.2147/ptt.s627030]
File in questo prodotto:
File Dimensione Formato  
PTT-627030-inhibiting-hur-mediated-mrna-stabilization-attenuates-psoria.pdf

accesso aperto

Tipologia: Versione editoriale (Publisher’s layout)
Licenza: Creative commons
Dimensione 10.57 MB
Formato Adobe PDF
10.57 MB Adobe PDF Visualizza/Apri
PTT-627030-inhibiting-hur-mediated-mrna-stabilization-attenuates-psoria (1).pdf

accesso aperto

Tipologia: Versione editoriale (Publisher’s layout)
Licenza: Creative commons
Dimensione 1 MB
Formato Adobe PDF
1 MB Adobe PDF Visualizza/Apri

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11572/502990
Citazioni
  • ???jsp.display-item.citation.pmc??? 1
  • Scopus ND
  • ???jsp.display-item.citation.isi??? 0
  • OpenAlex ND
social impact