SCUBA

PARP1 — Poly(ADP-ribose) polymerase 1

PARP1 belongs to a gene co-expression module in 12 of 28 SCUBA cell types. Each module groups genes that rise and fall together in that cell type; the genes it shares a module with are its closest co-expression partners there.

PARP1's module in each cell type

Cell typeModuleShares the module with
CD19⁺ B cellsChromatin Regulation
DNA/chromatin regulation
BIK, DSTN, GCHFR, GRHPR, HDAC1, HMGN1, IMP4, LYPLA1 +3 moreView in SCUBA
CD4⁺ T cellsOxidative phosphorylation
Mitochondrial & OxPhos
ACADVL, CHMP1A, COX14, EIF2AK1, EML2, ETFA, GPR108, NDUFA8 +12 moreView in SCUBA
EndothelialInflammatory Stress Response
Inflammation
ADI1, APLN, ARL6IP1, ARL6IP4, CCDC88A, DAP, GPR68, HEBP2 +11 moreView in SCUBA
Gamma-delta T cellsGlycolysis & Proteasome
Housekeeping
ACAA2, ANAPC15, APEH, C1QBP, CCDC167, CHMP2A, CLNS1A, ENO1 +11 more
Goblet cellsChromatin Remodeling Repair
chromatin regulation & transcription
CBX5, HACD3, NAP1L1, PPM1G, PRKDC, PSIP1, SMC1A, SMC3 +1 moreView in SCUBA
Hematopoietic progenitor cellsDNA Damage Repair
Housekeeping
GSPT1, HNRNPR, LARS1, MSH6, NCL, PRKDC, SUPT16H
Innate lymphoid cellsNK Cytotoxic Regulation
Cytotoxicity
ARHGAP30, BIN2, CAPN12, CHD9, CLK1, CTSC, CYB5B, DDX27 +29 moreView in SCUBA
Lymphatic endothelialLymphatic Valve Identity
Valve formation
ALCAM, C12orf57, C17orf58, CFH, CLDN11, DEGS2, EBPL, EDNRB +13 moreView in SCUBA
MacrophagesDNA Replication Metabolism
Cell cycle
AGPAT5, CBX1, DCK, FADS1, HACD3, HADH, ICMT, IDH2 +11 moreView in SCUBA
MonocytesDNA Damage Response
Stress
AGPAT5, ATM, CALM2, DCAF7, FAM13A, GPR155, MEF2C, NLN +4 moreView in SCUBA
Mucosal-associated invariant T cellOxidative Stress Response
Stress
CDC42EP3, CTU1, EXOSC5, GLRX, GNPDA1, HTATIP2, KRCC1, MLX +11 more
Natural Killer cellsGlycolytic Metabolism
Metabolism
COX5A, ENO1, GAPDH, MZT2A, MZT2B, PRKDC, SET, SNRPB +2 moreView in SCUBA

About the gene

SynonymsADPRT, ARTD1, PARP, PARS, Poly-PARP, PPOL
Chromosome1: 226360210-226408154
Predicted locationIntracellular
Essential geneNo
Protein classCancer-related genes, Enzymes, FDA approved drug targets, Metabolic proteins, Plasma proteins, Predicted intracellular proteins
Molecular functionAllosteric enzyme, DNA-binding, Glycosyltransferase, Nucleotidyltransferase, Transferase
Biological processApoptosis, DNA damage, DNA repair, Immunity, Innate immunity, Transcription, Transcription regulation

Function

Poly-ADP-ribosyltransferase that mediates poly-ADP- ribosylation of proteins and plays a key role in DNA repair. Mediates glutamate, aspartate, serine, histidine or tyrosine ADP-ribosylation of proteins: the ADP-D-ribosyl group of NAD(+) is transferred to the acceptor carboxyl group of target residues and further ADP-ribosyl groups are transferred to the 2'-position of the terminal adenosine moiety, building up a polymer with an average chain length of 20-30 units. Serine ADP-ribosylation of proteins constitutes the primary form of ADP-ribosylation of proteins in response to DNA damage. Specificity for the different amino acids is conferred by interacting factors, such as HPF1 and NMNAT1. Following interaction with HPF1, catalyzes serine ADP-ribosylation of target proteins; HPF1 confers serine specificity by completing the PARP1 active site. Also catalyzes tyrosine ADP-ribosylation of target proteins following interaction with HPF1. Following interaction with NMNAT1, catalyzes glutamate and aspartate ADP- ribosylation of target proteins; NMNAT1 confers glutamate and aspartate specificity (By similarity). PARP1 initiates the repair of DNA breaks: recognizes and binds DNA breaks within chromatin and recruits HPF1, licensing serine ADP-ribosylation of target proteins, such as histones (H2BS6ADPr and H3S10ADPr), thereby promoting decompaction of chromatin and the recruitment of repair factors leading to the reparation of DNA strand breaks. HPF1 initiates serine ADP-ribosylation but restricts the polymerase activity of PARP1 in order to limit the length of poly- ADP-ribose chains. In addition to base excision repair (BER) pathway, also involved in double-strand breaks (DSBs) repair: together with TIMELESS, accumulates at DNA damage sites and promotes homologous recombination repair by mediating poly-ADP-ribosylation. Mediates the poly-ADP-ribosylation of a number of proteins, including itself, APLF, CHFR, RPA1 and NFAT5. In addition to proteins, also able to ADP-ribosylate DNA: catalyzes ADP-ribosylation of DNA strand break termini containing terminal phosphates and a 2'-OH group in single- and double-stranded DNA, respectively. Required for PARP9 and DTX3L recruitment to DNA damage sites. PARP1- dependent PARP9-DTX3L-mediated ubiquitination promotes the rapid and specific recruitment of 53BP1/TP53BP1, UIMC1/RAP80, and BRCA1 to DNA damage sites. PARP1-mediated DNA repair in neurons plays a role in sleep: senses DNA damage in neurons and promotes sleep, facilitating efficient DNA repair (By similarity). In addition to DNA repair, also involved in other processes, such as transcription regulation, programmed cell death, membrane repair, adipogenesis and innate immunity. Acts as a repressor of transcription: binds to nucleosomes and modulates chromatin structure in a manner similar to histone H1, thereby altering RNA polymerase II. Acts both as a positive and negative regulator of transcription elongation, depending on the context. Acts as a positive regulator of transcription elongation by mediating poly-ADP- ribosylation of NELFE, preventing RNA-binding activity of NELFE and relieving transcription pausing. Acts as a negative regulator of transcription elongation in response to DNA damage by catalyzing poly-ADP-ribosylation of CCNT1, disrupting the phase separation activity of CCNT1 and subsequent activation of CDK9. Involved in replication fork progression following interaction with CARM1: mediates poly-ADP-ribosylation at replication forks, slowing fork progression. Poly-ADP-ribose chains generated by PARP1 also play a role in poly-ADP-ribose-dependent cell death, a process named parthanatos (By similarity). Also acts as a negative regulator of the cGAS-STING pathway. Acts by mediating poly-ADP- ribosylation of CGAS: PARP1 translocates into the cytosol following phosphorylation by PRKDC and catalyzes poly-ADP-ribosylation and inactivation of CGAS. Acts as a negative regulator of adipogenesis: catalyzes poly-ADP-ribosylation of histone H2B on 'Glu- 35' (H2BE35ADPr) following interaction with NMNAT1, inhibiting phosphorylation of H2B at 'Ser-36' (H2BS36ph), thereby blocking expression of pro-adipogenetic genes (By similarity). Involved in the synthesis of ATP in the nucleus, together with NMNAT1, PARG and NUDT5. Nuclear ATP generation is required for extensive chromatin remodeling events that are energy-consuming. [Poly [ADP-ribose] polymerase 1, processed C-terminus]: Promotes AIFM1-mediated apoptosis. This form, which translocates into the cytoplasm following cleavage by caspase-3 (CASP3) and caspase-7 (CASP7) in response to apoptosis, is auto-poly-ADP- ribosylated and serves as a poly-ADP-ribose carrier to induce AIFM1- mediated apoptosis. [Poly [ADP-ribose] polymerase 1, processed N-terminus]: This cleavage form irreversibly binds to DNA breaks and interferes with DNA repair, promoting DNA damage-induced apoptosis

Human Protein Atlas · Open Targets · UniProt

Gene annotation from the Human Protein Atlas and UniProt; see sources & licences.