User:Daniel Seeman/DELETE: Difference between revisions

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*<scene name='User:Daniel_Seeman/Caspase-7_Dynamics/1f1j/1'>Caspase-7 bound to dead-end substrate mimic DEVD-CHO</scene>, trapping protein in active/substrate bound conformation.
*<scene name='User:Daniel_Seeman/Caspase-7_Dynamics/1f1j/1'>Caspase-7 bound to dead-end substrate mimic DEVD-CHO</scene>, trapping protein in active/substrate bound conformation.
*<scene name='User:Daniel_Seeman/Caspase-7_Dynamics/1shj-234234/1'>Caspase-7 bound to allosteric inhibitor DICA through CYS290</scene> trapping protein in a form incompatible with substrate binding.
*<scene name='User:Daniel_Seeman/Caspase-7_Dynamics/1shj-234234/1'>Caspase-7 bound to allosteric inhibitor DICA through CYS290</scene> trapping protein in a form incompatible with substrate binding.
*<scene name='User:Daniel_Seeman/Caspase-7_Dynamics/Morph1/1'>Conformational change between substrate bound and substrate incompatible forms of Caspase-7</scene>
*<scene name='User:Daniel_Seeman/Caspase-7_Dynamics/Morph1/1'>Conformational change between substrate bound and substrate incompatible forms</scene> of Caspase-7.


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=== Molecular Playground banner ===


Molecular Playground banner: Conformational Dynamics between active and allosterically inhibited caspase-7 elucidate the mechanism of allostery in this important class of cysteine proteases.
'''Molecular Playground banner:''' Conformational Dynamics between active and allosterically inhibited caspase-7 elucidate the mechanism of allostery in this important class of cysteine proteases.

Revision as of 18:58, 3 May 2010

Toggle between active site inhibitor bound and allosterically inhibited caspase-7

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Forms of Caspase-7Forms of Caspase-7

  • , trapping protein in active/substrate bound conformation.
  • trapping protein in a form incompatible with substrate binding.
  • of Caspase-7.

Molecular Playground bannerMolecular Playground banner

Molecular Playground banner: Conformational Dynamics between active and allosterically inhibited caspase-7 elucidate the mechanism of allostery in this important class of cysteine proteases.