Sandbox Naama

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The uniqe structure of the mamalian chaperonine TRic/CCT was first published in 2010 by Cong Y etr al<ref>pmid:020194787</ref>.
The uniqe structure of the mamalian chaperonine TRic/CCT was first published in 2010 by Cong Y etr al<ref>pmid:020194787</ref>.
The TRiC/CCT chapronine aids to almost 10% of the cellular proteome to fold in their correct structure.
The TRiC/CCT chapronine aids to almost 10% of the cellular proteome to fold in their correct structure.
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This heterooligomer is composed of eight different paralogous subunits othat are organized together in a ring shape <scene name='Sandbox_Naama/One_subunit/2'>(view one subunit)</scene>.
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This heterooligomer is composed of eight different paralogous subunits othat are organized together in a ring shape <scene name='Sandbox_Naama/One_subunit/2'>(view one subunit)</scene>. <scene name='Sandbox_Naama/Colored_tric/1'>view full protein</scene>
These unique folding properties are likely linked to TRiC's unique heterooligomeric subunit organization, whereby each ring consists of eight different paralogous subunits in an arrangement that remains uncertain.
These unique folding properties are likely linked to TRiC's unique heterooligomeric subunit organization, whereby each ring consists of eight different paralogous subunits in an arrangement that remains uncertain.

Revision as of 13:25, 6 September 2012

TRic/CCT Structure

Structure of HMG-CoA reductase (PDB entry 3iyg)

Drag the structure with the mouse to rotate
  1. Cong Y, Baker ML, Jakana J, Woolford D, Miller EJ, Reissmann S, Kumar RN, Redding-Johanson AM, Batth TS, Mukhopadhyay A, Ludtke SJ, Frydman J, Chiu W. 4.0-A resolution cryo-EM structure of the mammalian chaperonin TRiC/CCT reveals its unique subunit arrangement. Proc Natl Acad Sci U S A. 2010 Mar 1. PMID:20194787
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