Sandbox Reserved 496: Difference between revisions

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'''Cholix Toxin''' named also CT, is a protein toxin that uses ADP-ribosyltransferases to modify target proteins in human cells. The mono-ADP-ribosyltransferase toxins are bacterial virulence factors that are believed to be a factor in many disease states in animals plants as well even humans. For a list of various and other similar toxins see [[Toxins]].
'''Cholix Toxin''' named also CT, is a protein toxin that uses ADP-ribosyltransferases to modify target proteins in human cells. The mono-ADP-ribosyltransferase toxins are bacterial virulence factors that are believed to be a factor in many disease states in animals plants as well even humans. For a list of various and other similar toxins see [[Toxins]].


<Structure load='2q5t' size='300' color='white' frame='true' align='right' caption='testcaption' />
<Structure load='569B' size='300' color='white' frame='true' align='right' caption='testcaption' />




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== Cholix Toxin from ''Vibrio Cholerae ''==  
== Cholix Toxin from ''Vibrio Cholerae ''==  
The [http://en.wikipedia.org/wiki/Crystal_structure crystal structure] of the [http://en.wikipedia.org/wiki/Proteolysis proteolytically] activated monomeric form of Cyt2Ba was determined at 1.8Å resolution. It consists of a single domain of  <scene name='Cyt2Ba/Alpha_beta/5'>α/β</scene> architecture with a <scene name='Cyt2Ba/Beta/2'>β-sheet</scene> (yellow) surrounded by 2 <scene name='Cyt2Ba/Alpha/2'>α-helical</scene> layers <font color='red'><b>(red)</b></font> forming a cytolysin fold.
The [http://en.wikipedia.org/wiki/Crystal_structure crystal structure] of the [http://en.wikipedia.org/wiki/Proteolysis proteolytically] activated monomeric form of Cyt2Ba was determined at 2.1Å resolution. It consists of a single domain of  <scene name='Cyt2Ba/Alpha_beta/5'>α/β</scene> architecture with a <scene name='Cyt2Ba/Beta/2'>β-sheet</scene> (yellow) surrounded by 2 <scene name='Cyt2Ba/Alpha/2'>α-helical</scene> layers <font color='red'><b>(red)</b></font> forming a cytolysin fold.