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Published on: March 1, 2024
Inhibition of CDC25C attenuates IL-17A-driven keratinocyte hyperproliferation and psoriasis progression
Xuejiao Liang1, Ningxin Wang1, Quanyao Yang2
1State Key Laboratory of Pharmaceutical Biotechnology, Department of Clinical Nutrition, Nanjing Drum Tower Hospital, School of Life Sciences, Nanjing University, Nanjing, China.
Abstract:
Psoriasis is an IL-17-driven chronic inflammatory skin disease characterized by excessive keratinocyte proliferation. Although anti-IL-17 biologics have shown substantial clinical benefit, incomplete efficacy and disease recurrence remain common, underscoring the need to identify additional downstream targets. We previously identified CDC25C as a key effector in a non-canonical IL-17A pathway that promotes epidermal hyperplasia. Here, we explored its therapeutic potential. Analysis of single-cell RNA-seq datasets from psoriatic patients revealed that CDC25C was significantly upregulated in lesional skin and selectively enriched in proliferative and inflammatory epidermal keratinocyte subsets. In vitro, IL-17A increased CDC25C expression and promoted keratinocytes proliferation. CDC25C inhibition with NSC95397 induced G2-phase arrest and significantly suppressed keratinocyte hyperproliferation and migration. Notably, it did not impair classical IL-17-induced proinflammatory factors expression, such as IL6 and CSF1. In an IMQ-induced psoriasis-like mouse model, CDC25C inhibition markedly alleviated epidermal hyperplasia, splenomegaly, and keratinocyte proliferation without affecting upstream cytokines such as Il-6 or Tnf. This selective inhibition profile is consistent with the operation of CDC25C within a non-canonical IL-17 signaling pathway. In addition, prophylactic administration of NSC95397 prior to disease induction provided stronger protection than therapeutic treatment, suggesting the role of CDC25C during early disease initiation. Together, these findings identify CDC25C as a key mediator of IL-17-driven keratinocyte hyperproliferation and validate it as a promising therapeutic strategy.
Insights
Psoriasis involves excessive skin cell growth driven by IL-17. Targeting CDC25C, a key protein in a non-canonical IL-17 pathway, effectively reduced skin cell proliferation and hyperplasia in models, offering a new therapeutic strategy.
Area of Science:
- Dermatology
- Molecular Biology
- Immunology
Background:
- Psoriasis is an IL-17-driven chronic inflammatory skin disease.
- Current anti-IL-17 therapies show incomplete efficacy, necessitating new targets.
- CDC25C was previously identified as a key effector in a non-canonical IL-17A pathway.
Purpose of the Study:
- To explore the therapeutic potential of targeting CDC25C in psoriasis.
- To investigate CDC25C's role in IL-17-driven keratinocyte hyperproliferation.
Main Methods:
- Analysis of single-cell RNA-seq datasets from psoriatic patients.
- In vitro studies using IL-17A stimulation and CDC25C inhibition (NSC95397).
- In vivo studies using an IMQ-induced psoriasis-like mouse model.
Main Results:
- CDC25C is upregulated in psoriatic skin and enriched in proliferative keratinocytes.
- CDC25C inhibition suppressed keratinocyte hyperproliferation and migration without affecting key inflammatory cytokines.
- Inhibition of CDC25C alleviated epidermal hyperplasia and splenomegaly in a mouse model.
- Prophylactic administration of NSC95397 showed greater protection than therapeutic treatment.
Conclusions:
- CDC25C is a key mediator of IL-17-driven keratinocyte hyperproliferation.
- CDC25C inhibition represents a promising therapeutic strategy for psoriasis.
- CDC25C may play a role in the early initiation of psoriasis.
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