Journal:JBIC:24

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<b>Molecular Tour</b><br>
<b>Molecular Tour</b><br>
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The structure of the P4 hairpin provides the first structural information on the solution structure of the CPEB3 ribozyme, a highly conserved self-cleaving RNA sequence encoded in the genome of humans and other mammals. CPEB3 is one of very few examples of small ribozymes occuring in human and the only ribozyme that is suggested to be of human origin. Its function, however, is not yet understood. <scene name='57/573995/Cv/2'>TextToBeDisplayed</scene>
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The structure of the P4 hairpin provides the first structural information on the solution structure of the CPEB3 ribozyme, a highly conserved self-cleaving RNA sequence encoded in the genome of humans and other mammals. CPEB3 is one of very few examples of small ribozymes occuring in human and the only ribozyme that is suggested to be of human origin. Its function, however, is not yet understood. <scene name='57/573995/Fig/1'>TextToBeDisplayed</scene>
The P4 hairpin points out of the complex interlaced structure of the CPEB3 ribozyme, it consists of a helix adopting the regular fold typical for RNA duplexes and is capped by a UGGU tetraloop.
The P4 hairpin points out of the complex interlaced structure of the CPEB3 ribozyme, it consists of a helix adopting the regular fold typical for RNA duplexes and is capped by a UGGU tetraloop.
Stacking interactions within this new tetraloop structure and a putative hydrogen bond stabilize the hairpin fold which is similar to the AGUU tetraloop structure serving as a protein-binding motif in another RNA.
Stacking interactions within this new tetraloop structure and a putative hydrogen bond stabilize the hairpin fold which is similar to the AGUU tetraloop structure serving as a protein-binding motif in another RNA.

Revision as of 11:46, 24 March 2014

PDB ID 2m5u_pre.pdb

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