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  2. Phosphorylation by JNK switches BRD4 functions

Phosphorylation by JNK switches BRD4 functions

  • Mol Cell. 2024 Oct 17:S1097-2765(24)00821-9. doi: 10.1016/j.molcel.2024.09.030.
Ballachanda N Devaiah 1 Amit Kumar Singh 1 Jie Mu 1 Qingrong Chen 2 Daoud Meerzaman 2 Dinah S Singer 3
Affiliations

Affiliations

  • 1 Experimental Immunology Branch, NCI, NIH, Bethesda, MD 20892, USA.
  • 2 Center for Biomedical Informatics and Information Technology, NCI, NIH, Bethesda, MD 20892, USA.
  • 3 Experimental Immunology Branch, NCI, NIH, Bethesda, MD 20892, USA. Electronic address: dinah.singer@nih.gov.
Abstract

Bromodomain 4 (BRD4), a key regulator with pleiotropic functions, plays crucial roles in cancers and cellular stress responses. It exhibits dual functionality: chromatin-bound BRD4 regulates remodeling through its Histone Acetyltransferase (HAT) activity, while promoter-associated BRD4 regulates transcription through its kinase activity. Notably, chromatin-bound BRD4 lacks kinase activity, and RNA polymerase II (RNA Pol II)-bound BRD4 exhibits no HAT activity. This study unveils one mechanism underlying BRD4's functional switch. In response to diverse stimuli, c-Jun N-terminal kinase (JNK)-mediated phosphorylation of human BRD4 at Thr1186 and Thr1212 triggers its transient release from chromatin, disrupting its HAT activity and potentiating its kinase activity. Released BRD4 directly interacts with and phosphorylates RNA Pol II, PTEFb, and c-Myc, thereby promoting transcription of target genes involved in immune and inflammatory responses. JNK-mediated BRD4 functional switching induces CD8 expression in thymocytes and epithelial-to-mesenchymal transition (EMT) in prostate Cancer cells. These findings elucidate the mechanism by which BRD4 transitions from a chromatin regulator to a transcriptional activator.

Keywords

BRD4; EMT; JNK; cellular stress; chromatin decompaction; histone acetyltransferase; kinase; phospho-BRD4; thymocyte stimulation; transcription activation.

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Products
  • Cat. No.
    Product Name
    Description
    Target
    Research Area
  • HY-P0069
    98.47%, JNK Inhibitor
    JNK