Sandbox Reserved 1659
From Proteopedia
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[[Image:pymol1.jpg]] [[Image:LntA.JPG]] | [[Image:pymol1.jpg]] [[Image:LntA.JPG]] | ||
- | The flexibility of H4 and H5 may have a role in the binding to BADH1 | + | The flexibility of H4 and H5 may have a role in the binding to BADH1. Many amino acids may be involved in the interaction of LntA with its ligand, such as BAHD1. A <scene name='86/868192/Dilysine/1'>dilysine motif located in the elbow region of lntA at position 180/181 on the H5 helix</scene> has proven to be essential for the interaction with the transcription factor BAHD1 thanks to a conformational change <scene name='86/868192/The_lysine_180_and_181/1'>(global overview)</scene>. Indeed, when this motif is substituted by two aspartic acid amino acids (K180D/K181D by mutation of LntA), a local redistribution of the charges is observed and lntA is not able anymore to interact with BAHD1. <ref> Lebreton A, Job V, Ragon M, Le Monnier A, Dessen A, Cossart P, Bierne H. 2014. Structural basis for the inhibition of the chromatin repressor BAHD1 by the bacterial nucleomodulin LntA </ref> |
Third patch has other charged residues which are likely to play a role in the interaction but they are less conserved so they might not be absolutely essential to the formation of the BAHD1-lntA complex. | Third patch has other charged residues which are likely to play a role in the interaction but they are less conserved so they might not be absolutely essential to the formation of the BAHD1-lntA complex. | ||
This protein can also be stabilized by glycerol molecules because they are hydrophobic and it prevents hydrolyzation. (green link) | This protein can also be stabilized by glycerol molecules because they are hydrophobic and it prevents hydrolyzation. (green link) |
Revision as of 12:34, 20 January 2022
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References
- ↑ ROHDE JOHN R. Listeria unwinds host’s DNA. SCIENCE, 2011 : 1271-1272
- ↑ Winter SE, Thiennimitr P et al. Gut inflammation provides a respiratory electron acceptor for Salmonella. Nature. 2010
- ↑ Dewoody, R., Merritt, P.M., Houppert, A.S. and Marketon, M.M. (2011), YopK regulates the Yersinia pestis type III secretion system from within host cells. Molecular Microbiology, 79: 1445-1461. https://doi.org/10.1111/j.1365-2958.2011.07534.x
- ↑ Lebreton A, Job V, Ragon M, Le Monnier A, Dessen A, Cossart P, Bierne H. 2014. Structural basis for the inhibition of the chromatin repressor BAHD1 by the bacterial nucleomodulin LntA
- ↑ Alice Lebreton. Régulations post-transcriptionnelles de l’expression génique de la cellule hôte en réponse à l’infection bactérienne. Sciences du Vivant, 2015