|
|
| Line 33: |
Line 33: |
| **[[1bfs]] – mp50 dimerization domain<br /> | | **[[1bfs]] – mp50 dimerization domain<br /> |
| **[[1u36]], [[1u3j]], [[1u3y]], [[1u3z]], [[1u41]], [[1u42]] – mp50 dimerization domain (mutant)<br /> | | **[[1u36]], [[1u3j]], [[1u3y]], [[1u3z]], [[1u41]], [[1u42]] – mp50 dimerization domain (mutant)<br /> |
| | |
| | *NF-kB1 (p52) |
| | |
| | **[[7cli]] – hp52 + DNA <br /> |
|
| |
|
| *NF-kB1 (p105) | | *NF-kB1 (p105) |
Revision as of 09:16, 22 November 2021
| Function
NF-kB or Nuclear Factor NF-kappa is a DNA transcription factor. It is involved in cellular response to stimuli. NF-kB contains a Rel homology domain (RHR) which contains 2 immunoglobulin-like subdomains which interact with the major groove of DNA[1]. I-κ-B-α is an inhibitor of NF-kB.
There are 5 proteins in the NF-kB family:
- NF-kB1 (synthesized as p105 and processed to p50)
- NF-kB2 (synthesized as p100 and processed to p52)
- RelA (or p65 subunit of NF-kB)
- RelB
- cRel.
See also NF-kB (hebrew).
Relevance
NF-kB plays a critical role in cancer development and progression and may determine its response to therapy. NF-kB is a target for chemotherapeutic agents[2]. NF-kB is a critical link between inflammation and cancer[3].
|
3D structures of NF-kappaB
Updated on 22-November-2021
{"openlevels":0}
- RelA (p65)
- NF-kB1 (p50)
- NF-kB1 (p52)
- NF-kB1 (p105)
- 2dbf – hp105 death domain
- 1ooa – mp105 + RNA
- NF-kB1 + RelA
- 1nfi – hp50 + RelA + I-κ-B-α
- 1ikn – mp50 + RelA + I-κ-B-α
- 1vkx, 1le5, 1le9, 1lei – mp50 + RelA + DNA
- 2i9t – mp105 + RelA + DNA
- 2v2t – mp50 + RelB + DNA
- 2o61 – hp105 RHR domain + RelA + DNA
- 3gut – hp105 + RelA + DNA
- 3jv4 – hp105 dimerization domain + RelB dimerization domain
References
proteopedia link