User:Luke Edward Severinac/Sandbox 1

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=='''Structure'''==
=='''Structure'''==
===Active Site===
===Active Site===
-
In order to function as an endoprotease, Caspase-6 binds a <scene name='75/752344/Protein_ligand/1'>ligand</scene>, which can include neuronal proteins and tubulins [https://en.wikipedia.org/wiki/Tubulin], in its active site. This binding groove contains three critical amino acid residues necessary to perform cleavage of the peptide bonds. Together,<scene name='75/752344/His121/1'>His-121</scene>, <scene name='75/752344/Glu123/1'>Glu-123</scene>, and <scene name='75/752344/Cys163/1'>Cys-163</scene> form a <scene name='75/752344/Caspase-6_catalytic_triad_real/1'>catalytic triad</scene>[[Image:Mechanism caspase 6.PNG|100 px|left|thumb|Cystine Aspartase mechanism]]. In the theorized mechanism, His-121 provides hydrogen bonding to the carbonyl of the peptide ligand. This stabilizes the tetrahedral intermediate formed when Cys-163 nucleuphilically attacks the protein. Glu-123 is used in the catalytic triad to deprotonate Cys-163, increasing the nucleophilicity of the residue.
+
In order to function as an endoprotease, Caspase-6 binds a <scene name='75/752344/Protein_ligand/1'>ligand</scene>, which can include neuronal proteins and tubulins [https://en.wikipedia.org/wiki/Tubulin], in its active site. This binding groove contains three critical amino acid residues necessary to perform cleavage of the peptide bonds. Together,<scene name='75/752344/His121/1'>His-121</scene>, <scene name='75/752344/Glu123/1'>Glu-123</scene>, and <scene name='75/752344/Cys163/1'>Cys-163</scene> form a <scene name='75/752344/Caspase-6_catalytic_triad_real/1'>catalytic triad</scene>[[Image:The real caspase mechanism.jpg|100 px|left|thumb|Cystine Aspartase mechanism]]. In the theorized mechanism, His-121 provides hydrogen bonding to the carbonyl of the peptide ligand. This stabilizes the tetrahedral intermediate formed when Cys-163 nucleuphilically attacks the protein. Glu-123 is used in the catalytic triad to deprotonate Cys-163, increasing the nucleophilicity of the residue.
===Zinc Exosite===
===Zinc Exosite===

Revision as of 23:32, 2 April 2017

Caspase-6 in Homo sapiens

Caspase-6

Drag the structure with the mouse to rotate

References

  1. Velazquez-Delgado EM, Hardy JA. Zinc-Mediated Allosteric Inhibition of Caspase-6. J Biol Chem. 2012 Aug 13. PMID:22891250 doi:http://dx.doi.org/10.1074/jbc.M112.397752

Wang, Xiao-Jun, Qin Cao, Yan Zhang, and Xiao-Dong Su. "Activation and Regulation of Caspase-6 and Its Role in Neurodegenerative Diseases." Annual Review of Pharmacology and Toxicology 55.1 (2015): 553-72. Web.

Wang XJ, Cao Q, Liu X, Wang KT, Mi W, et al. 2010. Crystal structures of human caspase 6 reveal a new mechanism for intramolecular cleavage self-activation. EMBO Rep. 11: 841–47

(self cleavage article)

http://www.rcsb.org/pdb/explore/explore.do?structureId=2WDP (this is the non-self cleaved protien)

Proteopedia Page Contributors and Editors (what is this?)

Luke Edward Severinac

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