User:Elizabeth Cook/Sandbox 1: Difference between revisions

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[[Image:Postptms.png|center|600px]]
[[Image:Postptms.png|center|600px]]


Bromodomains are well characterized and known to recognize acetylated lysine residues. In doing so, the proteins that contain bromodomains are able to respond the information they receive from the epigenetic "signal" via various other domains. These proteins can call upon various regulatory complexes including writers, easers, and transcription factors.  
Bromodomains are well characterized and known to recognize acetylated lysine residues. In doing so, the proteins that contain bromodomains are able to respond the information they receive from the epigenetic "signal" via various other domains. These proteins can call upon various regulatory complexes including writers, easers, and transcription factors. CECR2 is shown to recognize various acetyl post-translational modifications, singly and combinatorically, on the tails of histone H3 and H4.  
 
CECR2 is shown to recognize various acetyl post-translational modifications, singly and combinatorically, on the tails of histone H3 and H4.  


Bromodomains are composed of 4 alpha helices (<scene name='10/1079536/Helix_2/1'>αZ, αA, αB, αC</scene>), and 2 loops (ZA and BC). There are typically 4 conserved water molecules found within the acetyllysine binding pocket of the bromodomain. The two loops contain the majority of the residues responsible for ligand coordination, including the <scene name='10/1079536/N514_part_2/1'>conserved asparagine</scene>, N514 for CECR2, located in the BC loop. In addition, there is a <scene name='10/1079536/Helix_2/2'>hydrophobic shelf</scene> found before the before the ZA loop and following αZ helix (WPF in CECR2). There is also a <scene name='10/1079536/Gatekeeper/1'>gatekeeper residue</scene> that corresponds to the first residue found in the αC that is also hydrophobic, Y520 in CECR2. Histone acetyllysines form a hydrogen bond with the conserved asparagine of bromodomains while various other residues make polar contacts to stabilize the interaction, directly or indirectly.<ref>PMID:27769355</ref>
Bromodomains are composed of 4 alpha helices (<scene name='10/1079536/Helix_2/1'>αZ, αA, αB, αC</scene>), and 2 loops (ZA and BC). There are typically 4 conserved water molecules found within the acetyllysine binding pocket of the bromodomain. The two loops contain the majority of the residues responsible for ligand coordination, including the <scene name='10/1079536/N514_part_2/1'>conserved asparagine</scene>, N514 for CECR2, located in the BC loop. In addition, there is a <scene name='10/1079536/Helix_2/2'>hydrophobic shelf</scene> found before the before the ZA loop and following αZ helix (WPF in CECR2). There is also a <scene name='10/1079536/Gatekeeper/1'>gatekeeper residue</scene> that corresponds to the first residue found in the αC that is also hydrophobic, Y520 in CECR2. Histone acetyllysines form a hydrogen bond with the conserved asparagine of bromodomains while various other residues make polar contacts to stabilize the interaction, directly or indirectly.<ref>PMID:27769355</ref>

Revision as of 05:16, 1 May 2025

Cat Eye Syndrome Chromosome Region Candidate 2 Bromodomain

PDB ID: 5V84. CECR2 BRD in complex with Cpd6 inhibitor

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References

Proteopedia Page Contributors and Editors (what is this?)

Elizabeth Cook