KDM4C inhibition blocks tumor growth in basal breast cancer by promoting cathepsin L-mediated histone H3 cleavage.

KDM4C 抑制剂通过促进组织蛋白酶 L 介导的组蛋白 H3 裂解来阻断基底型乳腺癌的肿瘤生长

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作者:Li Zheqi, Peluffo Guillermo, Stevens Laura E, Qiu Xintao, Seehawer Marco, Tawawalla Amatullah, Huang Xiao-Yun, Egri Shawn B, Raval Shaunak, McFadden Maeve, D'Santos Clive S, Papachristou Eva, Kingston Natalie L, Nishida Jun, Evans Kyle E, Seo Ji-Heui, Clement Kendell, Temko Daniel, Ekram Muhammad, Li Rong, Rees Matthew G, Ronan Melissa M, Roth Jennifer A, Simeonov Anton, Kales Stephen C, Rai Ganesha, Lal-Nag Madhu, Maloney David J, Jadhav Ajit, Michor Franziska, Meissner Alex, Balko Justin M, Carroll Jason S, Freedman Matthew L, Jaffe Jacob D, Papanastasiou Malvina, Long Henry W, Polyak Kornelia
Basal breast cancer is a subtype with a poor prognosis in need of more effective therapeutic approaches. Here we describe a unique role for the KDM4C histone lysine demethylase in KDM4C-amplified basal breast cancers, where KDM4C inhibition reshapes chromatin and transcriptomic landscapes without substantial alterations of its canonical substrates, trimethylated histone H3 lysine 9 (H3K9me3) and lysine 36 (H3K36me3). Rather, KDM4C loss causes proteolytic cleavage of histone H3 mediated by cathepsin L (CTSL), resulting in decreased glutamate-cysteine ligase expression and increased reactive oxygen species. CTSL is recruited to the chromatin by the grainyhead-like 2 (GRHL2) transcription factor that is methylated at lysine 453 following KDM4C inhibition, triggering CTSL histone clipping activity. Deletion of CTSL rescued KDM4-loss-mediated tumor suppression. Our study reveals a function for KDM4C that connects cellular redox regulation and chromatin remodeling.

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