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The protein encoded by RNF11 contains a RING-H2 finger motif, which is known to be important for protein-protein interactions. Additionally we are shipping RNF11 Antibodies (42) and many more products for this protein.
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RNF11 is at the center of a finally regulated system where it acts both as an adaptor and a modulator of itch-mediated control of ubiquitination events underlying membrane traffic.
Our data exemplifies the relevance of RNF11 and persistent NF-kappaB (show NFKB1 Proteins) activation in Parkinson's disease
The negative influence that perturbation of RNF11 and SARA (show ZFYVE9 Proteins) levels exerts on the lysosomal degradation of EGFRs could underscore the significance of overexpression of RNF11 in certain cancers.
RNF11 functions together with TAX1BP1 (show TAX1BP1 Proteins) to restrict antiviral signaling and IFN-beta (show IFNB1 Proteins) production.
RNF11 negatively regulates canonical NF-kappaB (show NFKB1 Proteins) signaling in the nervous system.
Microglial RNF11 is a negative regulator of NF-kappaB (show NFKB1 Proteins) signalling pathway and could be a strong potential target for modulating inflammatory responses in neurodegenerative diseases.
Data show that membrane anchoring through acylation is necessary for RNF11 to be post-translationally modified by the addition of several ubiquitin moieties.
overexpression of RNF11, through its interaction with Smurf2 (show SMURF2 Proteins), can restore TGFbeta (show TGFB1 Proteins) responsiveness in transfected tumor cells
characterization of ring finger protein 11
RNF11 is a small RING E3 ligase that affects transforming growth factorbeta and EGF-R (show EGFR Proteins) signaling and is overexpressed in invasive breast cancers
We first demonstrate that a splice site variant in the RING finger protein 11 (RNF11) gene accounts for ~40% of cases of stunted growth in cattle
The protein encoded by this gene contains a RING-H2 finger motif, which is known to be important for protein-protein interactions. The expression of this gene has been shown to be induced by mutant RET proteins (MEN2A/MEN2B). The germline mutations in RET gene are known to be responsible for the development of multiple endocrine neoplasia (MEN).
RING finger protein 11
, NEDD4 WW domain-binding protein 2
, sid 1669