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RNF168 encodes an E3 ubiquitin ligase protein that contains a RING finger, a motif present in a variety of functionally distinct proteins and known to be involved in protein-DNA and protein-protein interactions. Additionally we are shipping RNF168 Antibodies (50) and RNF168 Proteins (6) and many more products for this protein.
RNF168, in complex with RAD6A (show ube2a ELISA Kits) or RAD6B (show UBE2B ELISA Kits), is activated in the DNA-damage-induced protein ubiquitination cascade.
Rnf168 is important for maintaining genomic integrity, and it cooperates with p53 (show TP53 ELISA Kits) in suppressing tumorigenesis.
Results reveal an important role of USP7 (show USP7 ELISA Kits) in regulating ubiquitin-dependent signaling via stabilization of RNF168.
CK2 (show CSNK2A1 ELISA Kits)/WIP1 (show PPM1D ELISA Kits)-mediated modulation of LSD1 (show KDM1A ELISA Kits) phosphorylation facilitates RNF168-dependent ubiquitination and recruitment of 53BP1 (show TP53BP1 ELISA Kits) to the DNA damage sites.
The ubiquitin ligase RNF168 is strictly dependent on the activity that UbK27 is required to promote chromatin ubiquitination following DNA damage.
Finding that RNF8 (show RNF8 ELISA Kits) is less abundant than RNF168 identifies RNF8 (show RNF8 ELISA Kits) as a rate-limiting determinant of focal repair complex assembly
Depletion of RNF8 (show RNF8 ELISA Kits) or RNF168 blocks the degradation of diffusely localized nuclear 53BP1 (show TP53BP1 ELISA Kits).
The E3 ligase RNF168 promotes both H2A ubiquitylation and neddylation. RNF168 is itself a substrate for NEDD8, and neddylation of RNF168 is necessary for its E3 ubiquitin activity.
The acidic patch functions within the nucleosome as nucleosomes containing a mutated acidic patch exhibit defective H2A/H2AXub by RNF168 and RING1B (show RNF2 ELISA Kits)/BMI1 (show BMI1 ELISA Kits) in vitro
Taken together, the results suggested that USP3 is a negative regulator of ubiquitination signaling, counteracting RNF168- and RNF8 (show RNF8 ELISA Kits)-mediated ubiquitination
Before their localization to DNA double strand breaks, RNF168 interacts with 53BP1 and modifies it through the addition of a chain of ubiquitin-polypeptides.
RNF168 physically interacts with LSD1 (show KDM1A ELISA Kits) and we find this interaction to be important for LSD1 (show KDM1A ELISA Kits) recruitment to DNA damage sites.
This gene encodes an E3 ubiquitin ligase protein that contains a RING finger, a motif present in a variety of functionally distinct proteins and known to be involved in protein-DNA and protein-protein interactions. The protein is involved in DNA double-strand break (DSB) repair. Mutations in this gene result in Riddle syndrome.
E3 ubiquitin-protein ligase RNF168
, ring fnger protein 168