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==Structure==
==Structure==
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The zebrafish ß-catenin is constituted by 781 amino acids and contains a core of 12 armadillo repeats domain and an alpha helix, the helix-C, at the beginning of the ß-catenin C-terminal domain. The armadillo domain is made of three helices in each repeat and has a particular site which is positively charged, constituting the binding surface for the majority of ß-catenin ligands. <ref name="xing2009" />
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The zebrafish ß-catenin is constituted by 781 amino acids and contains a core of 12 armadillo repeats domain and an alpha helix, the <scene name='84/845942/Betacatenin_helixc/1'>helix-C</scene>, at the beginning of the ß-catenin C-terminal domain. The armadillo domain is made of three helices in each repeat and has a particular site which is positively charged, constituting the binding surface for the majority of ß-catenin ligands. <ref name="xing2009" />
The sequences of the protein terminal domains are less conserved than the armadillo repeat domain and mediate a subset of protein-protein interactions. It is observed that the helix C constitutes the C-terminal domain, and the N terminus of armadillo repeat has an alpha helix. Both N- and C-terminal domains do not interact with the armadillo repeat domain. <ref name="xing2009" />
The sequences of the protein terminal domains are less conserved than the armadillo repeat domain and mediate a subset of protein-protein interactions. It is observed that the helix C constitutes the C-terminal domain, and the N terminus of armadillo repeat has an alpha helix. Both N- and C-terminal domains do not interact with the armadillo repeat domain. <ref name="xing2009" />
In contrast to the armadillo ligand-binding structural groove, the C-terminal tail is highly negatively charged. It caps the hydrophobic surface formed by the C-terminal end of the armadillo repeats. Thereby, this structure forms part of the superhelical structure core of ß-catenin together with armadillo repeat domain. <ref name="xing2009" />
In contrast to the armadillo ligand-binding structural groove, the C-terminal tail is highly negatively charged. It caps the hydrophobic surface formed by the C-terminal end of the armadillo repeats. Thereby, this structure forms part of the superhelical structure core of ß-catenin together with armadillo repeat domain. <ref name="xing2009" />
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It is possible that the helix-C is important for the transactivation of Wnt-responsive genes, but not for the cell adhesion through cadherins. Hence, this same β-catenin region is also the binding site of transcriptional inhibitors that compete directly with TCF for β-catenin binding.<ref name="xing2009" />
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It is possible that the <scene name='84/845942/Betacatenin_helixc/1'>helix-C</scene> is important for the transactivation of Wnt-responsive genes, but not for the cell adhesion through cadherins. Hence, this same β-catenin region is also the binding site of transcriptional inhibitors that compete directly with TCF for β-catenin binding.<ref name="xing2009" />
==Cell Adhesion==
==Cell Adhesion==

Revision as of 00:36, 15 June 2020

ß-catenin

Structure of ß-catenin from Zebrafish

Drag the structure with the mouse to rotate

References

  1. 1.0 1.1 1.2 1.3 1.4 Xing Y, Takemaru K, Liu J, Berndt JD, Zheng JJ, Moon RT, Xu W. Crystal structure of a full-length beta-catenin. Structure. 2008 Mar;16(3):478-87. PMID:18334222 doi:10.1016/j.str.2007.12.021
  2. Developmental Biology . Eleventh Edition. By Scott F. Gilbert and Michael J. F. Barresi. Sunderland (Massachusetts): Sinauer Associates. ISBN: 978-1-60535-470-5. 2016.
  3. 3.0 3.1 3.2 3.3 Valenta T, Hausmann G, Basler K. The many faces and functions of beta-catenin. EMBO J. 2012 Jun 13;31(12):2714-36. doi: 10.1038/emboj.2012.150. Epub 2012 May, 22. PMID:22617422 doi:http://dx.doi.org/10.1038/emboj.2012.150
  4. doi: https://dx.doi.org/10.1016/s0092-8674(01)00330-0

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Rubens Koity Ito

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