An Expression Screen Reveals Modulators of Class II Histone Deacetylase Phosphorylation
Overview
Affiliations
Class II histone deacetylases (HDACs) repress transcription by associating with a variety of transcription factors and corepressors. Phosphorylation of a set of conserved serine residues in the N-terminal extensions of class II HDACs creates binding sites for 14-3-3 chaperone proteins, which trigger nuclear export of these HDACs, thereby derepressing specific target genes in a signal-dependent manner. To identify intracellular signaling pathways that control phosphorylation of HDAC5, a class II HDAC, we designed a eukaryotic cDNA expression screen in which a GAL4-dependent luciferase reporter was expressed with the DNA-binding domain of GAL4 fused to the N-terminal extension of HDAC5 and the VP16 transcription activation domain fused to 14-3-3. The transfection of COS cells with cDNA expression libraries results in activation of luciferase expression by cDNAs encoding HDAC5 kinases or modulators of such kinases that enable phosphorylated GAL4-HDAC5 to recruit 14-3-3-VP16 with consequent reconstitution of a functional transcriptional complex. Our results reveal a remarkable variety of signaling pathways that converge on the signal-responsive phosphorylation sites in HDAC5, thereby enabling HDAC5 to connect extracellular signals to the genome.
Kamal S, Potukutchi S, Gelovani D, Bonomi R, Kallakuri S, Cavanaugh J Mol Psychiatry. 2022; 27(3):1683-1693.
PMID: 35027678 PMC: 11629393. DOI: 10.1038/s41380-021-01369-7.
Helmstadter K, Ljubojevic-Holzer S, Wood B, Taheri K, Sedej S, Erickson J Basic Res Cardiol. 2021; 116(1):11.
PMID: 33590335 PMC: 7884572. DOI: 10.1007/s00395-021-00850-2.
Pablo Tortola C, Fielitz B, Li Y, Rudebusch J, Luft F, Fielitz J Front Physiol. 2021; 11:550506.
PMID: 33519497 PMC: 7838639. DOI: 10.3389/fphys.2020.550506.
Barnes N, Ahern G, Becamel C, Bockaert J, Camilleri M, Chaumont-Dubel S Pharmacol Rev. 2020; 73(1):310-520.
PMID: 33370241 PMC: 7770494. DOI: 10.1124/pr.118.015552.
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Patel H, Li J, Herrero A, Kroboth J, Byron A, von Kriegsheim A Sci Rep. 2020; 10(1):3902.
PMID: 32127582 PMC: 7054267. DOI: 10.1038/s41598-020-60604-3.