» Articles » PMID: 20221260

KRAB-zinc Finger Proteins and KAP1 Can Mediate Long-range Transcriptional Repression Through Heterochromatin Spreading

Overview
Journal PLoS Genet
Specialty Genetics
Date 2010 Mar 12
PMID 20221260
Citations 224
Authors
Affiliations
Soon will be listed here.
Abstract

Krüppel-associated box domain-zinc finger proteins (KRAB-ZFPs) are tetrapod-specific transcriptional repressors encoded in the hundreds by the human genome. In order to explore their as yet ill-defined impact on gene expression, we developed an ectopic repressor assay, allowing the study of KRAB-mediated transcriptional regulation at hundreds of different transcriptional units. By targeting a drug-controllable KRAB-containing repressor to gene-trapping lentiviral vectors, we demonstrate that KRAB and its corepressor KAP1 can silence promoters located several tens of kilobases (kb) away from their DNA binding sites, with an efficiency which is generally higher for promoters located within 15 kb or less. Silenced promoters exhibit a loss of histone H3-acetylation, an increase in H3 lysine 9 trimethylation (H3K9me3), and a drop in RNA Pol II recruitment, consistent with a block of transcriptional initiation following the establishment of silencing marks. Furthermore, we reveal that KRAB-mediated repression is established by the long-range spreading of H3K9me3 and heterochromatin protein 1 beta (HP1beta) between the repressor binding site and the promoter. We confirm the biological relevance of this phenomenon by documenting KAP1-dependent transcriptional repression at an endogenous KRAB-ZFP gene cluster, where KAP1 binds to the 3' end of genes and mediates propagation of H3K9me3 and HP1beta towards their 5' end. Together, our data support a model in which KRAB/KAP1 recruitment induces long-range repression through the spread of heterochromatin. This finding not only suggests auto-regulatory mechanisms in the control of KRAB-ZFP gene clusters, but also provides important cues for interpreting future genome-wide DNA binding data of KRAB-ZFPs and KAP1.

Citing Articles

Chemical engineering of CRISPR-Cas systems for therapeutic application.

Barber H, Pater A, Gagnon K, Damha M, OReilly D Nat Rev Drug Discov. 2024; 24(3):209-230.

PMID: 39690326 DOI: 10.1038/s41573-024-01086-0.


The Roles of H3K9me3 Writers, Readers, and Erasers in Cancer Immunotherapy.

Oleksiewicz U, Kuciak M, Jaworska A, Adamczak D, Bisok A, Mierzejewska J Int J Mol Sci. 2024; 25(21).

PMID: 39519018 PMC: 11546771. DOI: 10.3390/ijms252111466.


Enhanced Transcription of Human Endogenous Retroviruses and TRIM28 Downregulation in Patients with Inflammatory Bowel Disease.

Tovo P, Ribaldone D, Galliano I, Caviglia G, Dini M, Veglio V Viruses. 2024; 16(10).

PMID: 39459904 PMC: 11512322. DOI: 10.3390/v16101570.


Deciphering the nexus between long non-coding RNAs and endoplasmic reticulum stress in hepatocellular carcinoma: biomarker discovery and therapeutic horizons.

Goyal H, Parwani S, Kaur J Cell Death Discov. 2024; 10(1):451.

PMID: 39448589 PMC: 11502918. DOI: 10.1038/s41420-024-02200-2.


Conserved helical motifs in the IKZF1 disordered region mediate NuRD interaction and transcriptional repression.

Zhang T, Wang Y, Montoya A, Patrascan I, Nebioglu N, Pallikonda H Blood. 2024; 145(4):422-437.

PMID: 39437550 PMC: 7617475. DOI: 10.1182/blood.2024024787.


References
1.
Riclet R, Chendeb M, Vonesch J, Koczan D, Thiesen H, Losson R . Disruption of the interaction between transcriptional intermediary factor 1{beta} and heterochromatin protein 1 leads to a switch from DNA hyper- to hypomethylation and H3K9 to H3K27 trimethylation on the MEST promoter correlating with gene.... Mol Biol Cell. 2008; 20(1):296-305. PMC: 2613122. DOI: 10.1091/mbc.e08-05-0510. View

2.
Emerson R, Thomas J . Adaptive evolution in zinc finger transcription factors. PLoS Genet. 2009; 5(1):e1000325. PMC: 2604467. DOI: 10.1371/journal.pgen.1000325. View

3.
Vaquerizas J, Kummerfeld S, Teichmann S, Luscombe N . A census of human transcription factors: function, expression and evolution. Nat Rev Genet. 2009; 10(4):252-63. DOI: 10.1038/nrg2538. View

4.
Hu G, Kim J, Xu Q, Leng Y, Orkin S, Elledge S . A genome-wide RNAi screen identifies a new transcriptional module required for self-renewal. Genes Dev. 2009; 23(7):837-48. PMC: 2666338. DOI: 10.1101/gad.1769609. View

5.
Tian C, Xing G, Xie P, Lu K, Nie J, Wang J . KRAB-type zinc-finger protein Apak specifically regulates p53-dependent apoptosis. Nat Cell Biol. 2009; 11(5):580-91. DOI: 10.1038/ncb1864. View