p62 scaffold protein anti-Human TRAF6

CAT#: SPS-L147

The p62 that bound TRAF6 was isolated from the library using phage display techonology. After affinity maturation, p62 variants were identified having affinities for TRAF6 as determined by biosensor technology. It's potential to be used in diagnostic, research and therapeutic applications.

Gene Expression
Figure 1 IF staining of human cell line U-2 OS Figure 2 IHC staining of human rectum Figure 3 Lymph node Figure 4 Cerebral cortex Figure 5 Colon Figure 6 Liver Figure 7 Testis Figure 8 RNA cell line category: Low cell line specificity

Specifications

  • Scaffold Name
  • p62
  • Origin
  • p62
  • Target
  • TRAF6
  • Species Reactivity
  • Human
  • Expression Host
  • E. coli
  • Applications
  • ELISA; IHC; Microscopy; FC; WB; FuncS

Target

  • Alternative Names
  • p62; p62; RNF85; MGC:3310
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Breast cancer biomarkers at key points during disease progression
Investigating Signal Transduction
This p62 scaffold is essential for our work on signal transduction in the TNF receptor superfamily. It binds TRAF6 effectively, allowing us to study the mediation of signals from receptors like CD40 and the activation of the NF-kappaB pathway.
Breast cancer biomarkers at key points during disease progression
Confirmed TRAF-C Interaction
We validated the interaction of this protein with the TRAF-C domain using biosensor technology. It effectively links distinct signaling pathways in our cell-free assays, helping us understand the role of ubiquitin conjugating enzymes in IKK activation.

Q&As

  1. What pathways does the TRAF6 target mediate?

    A: TRAF6 mediates signaling from members of the TNF receptor superfamily as well as the Toll/IL-1 family. It functions as a signal transducer in the NF-kappaB pathway, activating IkappaB kinase (IKK) in response to proinflammatory cytokines.

  2. What domains does the TRAF6 protein contain?

    A: The TRAF6 protein has an amino terminal RING domain followed by four zinc-finger motifs, a central coiled-coil region, and a highly conserved carboxyl terminal domain known as the TRAF-C domain.

View the frequently asked questions answered by Creative Biolabs Support.

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Related Diseases

Related Signaling Pathways

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