| 2018 |
NP220 (ZNF638) is a DNA-binding protein that recruits the HUSH complex (MPP8, TASOR, PPHLN1), the histone methyltransferase SETDB1, and histone deacetylases HDAC1 and HDAC4 to unintegrated retroviral DNA, thereby mediating its epigenetic silencing. Knockout of NP220 accelerates retroviral replication. |
Genome-wide CRISPR-Cas9 screen, chromatin immunoprecipitation (ChIP), knockout validation |
Nature |
High |
30487602
|
| 2011 |
ZNF638 physically interacts with C/EBPβ and C/EBPδ and transcriptionally cooperates with them to induce PPARγ expression, thereby acting as a transcriptional cofactor required for adipocyte differentiation. Ectopic expression increases adipogenesis; knockdown inhibits differentiation. |
Co-immunoprecipitation, ectopic expression, siRNA knockdown, gene expression assays |
The Journal of biological chemistry |
Medium |
21602272
|
| 2014 |
ZNF638 localizes to nuclear bodies enriched with splicing factors and interacts with splicing regulators (identified by biochemical purification and mass spectrometry). ZNF638 is sufficient to promote alternative splicing; its arginine/serine-rich motif and C-terminal zinc finger domain are required for speckle localization, adipocyte differentiation function, and regulation of alternatively spliced isoforms of lipin1 and NCoR1. Recruitment to promoters via C/EBP proteins enhances alternative splicing activity. |
Biochemical purification, mass spectrometry, minigene reporter splicing assay, structure-function mutagenesis, immunofluorescence localization |
Journal of lipid research |
Medium |
25024404
|
| 2019 |
CREB binds directly to two cAMP response elements within 500 bp of the ZNF638 transcription start site and is necessary and sufficient to drive ZNF638 transcription. ZNF638 is selectively expressed in mature thermogenic (brown and beige) adipocytes in vivo and is induced by cAMP modulators, cold exposure, and β-adrenergic stimulation. |
EMSA, chromatin immunoprecipitation (ChIP), in vivo cold-exposure and β-adrenergic stimulation, gene expression analysis |
Journal of the Endocrine Society |
Medium |
31745529
|
| 2020 |
USP7 (a deubiquitinase) interacts with ZNF638, deubiquitylates it (stabilizing the protein), and also promotes ZNF638 transcription via CREB stabilization. The USP7/ZNF638 axis selectively increases SREBP1C cleavage through AKT/mTORC1/S6K signaling and forms a nuclear complex with SREBP1C to transcriptionally regulate lipogenic enzymes (ACACA, FASN, SCD). Abrogation of USP7 or ZNF638 ameliorates liver steatosis in mice. |
Co-immunoprecipitation, ubiquitination assay, in vivo mouse model (fructose-induced steatosis), knockdown/knockout, signaling pathway analysis |
Cell death & disease |
Medium |
33040080
|
| 2021 |
NP220 (ZNF638), in association with the HUSH complex, mediates transcriptional silencing of recombinant AAV (rAAV) genomes (both single-stranded and self-complementary) persisting as extrachromosomal episomes. Loss of NP220 or HUSH complex components increases AAV transcript levels and reduces repressive H3K9me3 marks on associated histones. The AAV capsid serotype influences the extent of NP220-mediated silencing. |
CRISPR knockout, qRT-PCR (transcript levels), H3K9me3 chromatin analysis, comparison across AAV serotypes |
Journal of virology |
Medium |
34878926
|
| 2024 |
ZNF638 functions as a transcriptional repressor in adipose tissue by recruiting HDAC1 for histone deacetylation, thereby suppressing broad lipid metabolic genes including Angptl8. In adipose-specific ZNF638 knockout female mice, Angptl8 is upregulated, leading to reduced LPL activity and elevated serum TG after refeeding. The sexual dimorphism is due to estrogen-dependent regulation of the ZNF638-ANGPTL8 axis. |
Adipose-specific knockout mice (ZNF638 flox × Adiponectin-Cre), adenoviral overexpression, RNA-sequencing, ANGPTL8 neutralization, ChIP-implied HDAC1 recruitment assay |
Metabolism: clinical and experimental |
Medium |
38211696
|
| 2024 |
ZNF638 recruits the HUSH complex to deposit repressive H3K9me3 marks on endogenous retroelements in glioblastoma cells. ZNF638 knockdown decreases H3K9 trimethylation, increases cytosolic dsRNA, activates intracellular dsRNA-sensing cascades (RIG-I, MDA5, IRF3), and upregulates antiviral immune programs including PD-L1 expression. |
siRNA knockdown, H3K9me3 ChIP, dsRNA detection, immune signaling pathway analysis, syngeneic murine orthotopic GBM models |
bioRxivpreprint |
Medium |
39464150
|
| 2026 |
ZNF638 binds the preS and S gene regions of HBV cccDNA (demonstrated by ChIP and nuclear HBV cccDNA pulldown assays) and represses cccDNA transcription by recruiting the HUSH complex and increasing H3K9me3 modification via SETDB1. In vivo, ZNF638 siRNA knockdown significantly compromised HBV RNAi therapy efficacy in HBV transgenic mice. |
Chromatin immunoprecipitation, nuclear HBV cccDNA pulldown, FISH-IF, qRT-PCR, ELISA, in vivo HBV transgenic mouse model with siRNA knockdown |
Cell communication and signaling : CCS |
Medium |
41689010
|
| 1998 |
Human NP220 (ZNF638) is a DNA-binding nuclear protein with an arginine/serine-rich motif and a polypyrimidine tract-binding motif, mapped by FISH to chromosome band 2p13.1-p13.2. NP220 and matrin 3 are considered to form a novel family of nuclear proteins. |
Fluorescence in situ hybridization (FISH), domain analysis |
Bioscience, biotechnology, and biochemistry |
Low |
9757574
|