Sandbox Reserved 338: Difference between revisions

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{{STRUCTURE_2vnc | PDB=2vnc | SCENE=Sandbox_Reserved_338/2vnc/1}}
{{STRUCTURE_2vnc | PDB=2vnc | SCENE=Sandbox_Reserved_338/2vnc/1}}
A debranching enzyme is responsible for the breakdown of glycogen <ref name="Woo"> 18703518  </ref>.  There are two main groups of debranching enzymes, and they are separated according to their activity <ref name="Woo" /ref>. The first group, consisting of [[pullulanases]] and isoamylases which only possess one function α-1,6-glycosidase activity <ref name="Woo" /ref>. Whereas the second group  consists of glycogen debranching enzymes which possess two functions, both α-1,6-glycosidase and α-1,4-transferase activity <ref name="Woo" /ref>.
==References==
<references />

Revision as of 03:54, 14 March 2011

This Sandbox is Reserved from January 10, 2010, through April 10, 2011 for use in BCMB 307-Proteins course taught by Andrea Gorrell at the University of Northern British Columbia, Prince George, BC, Canada.
To get started:
  • Click the edit this page tab at the top. Save the page after each step, then edit it again.
  • Click the 3D button (when editing, above the wikitext box) to insert Jmol.
  • show the Scene authoring tools, create a molecular scene, and save it. Copy the green link into the page.
  • Add a description of your scene. Use the buttons above the wikitext box for bold, italics, links, headlines, etc.

More help: Help:Editing


Drag the structure with the mouse to rotate
2vnc, resolution 3.00Å (default scene)
Related: 2vuy, 2vr5, 2vnb
Resources: FirstGlance, OCA, RCSB, PDBsum
Coordinates: save as pdb, mmCIF, xml



A debranching enzyme is responsible for the breakdown of glycogen [1]. There are two main groups of debranching enzymes, and they are separated according to their activity <ref name="Woo" /ref>. The first group, consisting of pullulanases and isoamylases which only possess one function α-1,6-glycosidase activity <ref name="Woo" /ref>. Whereas the second group consists of glycogen debranching enzymes which possess two functions, both α-1,6-glycosidase and α-1,4-transferase activity <ref name="Woo" /ref>.



References

  1. ↑ 18703518