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Loss-of-function mutations in Keratin 32 gene disrupt skin immune homeostasis in pityriasis rubra pilaris

Author

Listed:
  • Peidian Shi

    (Shandong First Medical University
    Shandong Academy of Medical Sciences)

  • Wenjie Chen

    (Shandong First Medical University
    Shandong Academy of Medical Sciences)

  • Xinxing Lyu

    (Shandong First Medical University
    Shandong Academy of Medical Sciences)

  • Zhenzhen Wang

    (Shandong First Medical University
    Shandong Academy of Medical Sciences)

  • Wenchao Li

    (Shandong First Medical University
    Shandong Academy of Medical Sciences)

  • Fengming Jia

    (Shandong First Medical University
    Shandong Academy of Medical Sciences)

  • Chunzhi Zheng

    (Shandong First Medical University
    Shandong Academy of Medical Sciences)

  • Tingting Liu

    (Shandong First Medical University
    Shandong Academy of Medical Sciences)

  • Chuan Wang

    (Shandong First Medical University
    Shandong Academy of Medical Sciences)

  • Yuan Zhang

    (Shandong First Medical University
    Shandong Academy of Medical Sciences)

  • Zihao Mi

    (Shandong First Medical University
    Shandong Academy of Medical Sciences)

  • Yonghu Sun

    (Shandong First Medical University
    Shandong Academy of Medical Sciences)

  • Xuechao Chen

    (Shandong First Medical University
    Shandong Academy of Medical Sciences)

  • Shengli Chen

    (Shandong First Medical University
    Shandong Academy of Medical Sciences)

  • Guizhi Zhou

    (Shandong First Medical University
    Shandong Academy of Medical Sciences)

  • Yongxia Liu

    (Shandong First Medical University
    Shandong Academy of Medical Sciences)

  • Yingjie Lin

    (Shandong First Medical University
    Shandong Academy of Medical Sciences)

  • Fuxiang Bai

    (Shandong First Medical University
    Shandong Academy of Medical Sciences)

  • Qing Sun

    (Shandong University)

  • Monday O. Ogese

    (University of Liverpool)

  • Qiang Yu

    (Genome Institute of Singapore)

  • Jianjun Liu

    (Genome Institute of Singapore)

  • Hong Liu

    (Shandong First Medical University
    Shandong Academy of Medical Sciences
    Shandong First Medical University and Shandong Academy of Medical Sciences)

  • Furen Zhang

    (Shandong First Medical University
    Shandong Academy of Medical Sciences
    Shandong First Medical University and Shandong Academy of Medical Sciences
    Shandong University of Traditional Chinese Medicine)

Abstract

Pityriasis rubra pilaris (PRP) is an inflammatory papulosquamous dermatosis, characterized by hyperkeratotic follicular papules and erythematous desquamative plaques. The precise pathogenic mechanism underlying PRP remains incompletely understood. Herein, we conduct a case-control study involving a cohort of 102 patients with sporadic PRP and 800 healthy controls of Han Chinese population and identify significant associations (P = 1.73 × 10−6) between PRP and heterozygous mutations in the Keratin 32 gene (KRT32). KRT32 is found to be predominantly localized in basal keratinocytes and exhibits an inhibitory effect on skin inflammation by antagonizing the NF-κB pathway. Mechanistically, KRT32 binds to NEMO, promoting excessive K48-linked polyubiquitination and NEMO degradation, which hinders IKK complex formation. Conversely, loss-of-function mutations in KRT32 among PRP patients result in NF-κB hyperactivation. Importantly, Krt32 knockout mice exhibit a PRP-like dermatitis phenotype, suggesting compromised anti-inflammatory function of keratinocytes in response to external pro-inflammatory stimuli. This study proposes a role for KRT32 in regulating inflammatory immune responses, with damaging variants in KRT32 being an important driver in PRP development. These findings offer insights into the regulation of skin immune homeostasis by keratin and open up the possibility of using KRT32 as a therapeutic target for PRP.

Suggested Citation

  • Peidian Shi & Wenjie Chen & Xinxing Lyu & Zhenzhen Wang & Wenchao Li & Fengming Jia & Chunzhi Zheng & Tingting Liu & Chuan Wang & Yuan Zhang & Zihao Mi & Yonghu Sun & Xuechao Chen & Shengli Chen & Gui, 2024. "Loss-of-function mutations in Keratin 32 gene disrupt skin immune homeostasis in pityriasis rubra pilaris," Nature Communications, Nature, vol. 15(1), pages 1-18, December.
  • Handle: RePEc:nat:natcom:v:15:y:2024:i:1:d:10.1038_s41467-024-50481-z
    DOI: 10.1038/s41467-024-50481-z
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    1. Kathryn Tunyasuvunakool & Jonas Adler & Zachary Wu & Tim Green & Michal Zielinski & Augustin Žídek & Alex Bridgland & Andrew Cowie & Clemens Meyer & Agata Laydon & Sameer Velankar & Gerard J. Kleywegt, 2021. "Highly accurate protein structure prediction for the human proteome," Nature, Nature, vol. 596(7873), pages 590-596, August.
    2. Nikolas Furthmann & Verian Bader & Lena Angersbach & Alina Blusch & Simran Goel & Ana Sánchez-Vicente & Laura J. Krause & Sarah A. Chaban & Prerna Grover & Victoria A. Trinkaus & Eva M. Well & Maximil, 2023. "NEMO reshapes the α-Synuclein aggregate interface and acts as an autophagy adapter by co-condensation with p62," Nature Communications, Nature, vol. 14(1), pages 1-24, December.
    3. John Jumper & Richard Evans & Alexander Pritzel & Tim Green & Michael Figurnov & Olaf Ronneberger & Kathryn Tunyasuvunakool & Russ Bates & Augustin Žídek & Anna Potapenko & Alex Bridgland & Clemens Me, 2021. "Highly accurate protein structure prediction with AlphaFold," Nature, Nature, vol. 596(7873), pages 583-589, August.
    4. Inês Sequeira & Joana F. Neves & Dido Carrero & Qi Peng & Natalia Palasz & Kifayathullah Liakath-Ali & Graham M. Lord & Peter R. Morgan & Giovanna Lombardi & Fiona M. Watt, 2018. "Immunomodulatory role of Keratin 76 in oral and gastric cancer," Nature Communications, Nature, vol. 9(1), pages 1-15, December.
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