Glycogenin: Difference between revisions

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<StructureSection load='3rmv' size='450' side='right' scene='' caption='Human glycogenin-1 complex with UDP (stick model), ethanediol, Mg+2 and Mn+2 ion (PDB code [[3rmv]]'>
<StructureSection load='3rmv' size='450' side='right' scene='' caption='Human glycogenin-1 complex with UDP (stick model), ethanediol, Mg+2 (green) and Mn+2 (purple) ions (PDB code [[3rmv]])'>
[[Image:Glycogen_structure.png|thumb|left|350x350px|alt=Alt text|Figure 1.  A cross-sectional view of glycogen with the glycogenin dimer remaining covalently attached to the non-reducing end in the centre of the globule.]]
[[Image:Glycogen_structure.png|thumb|left|350x350px|alt=Alt text|Figure 1.  A cross-sectional view of glycogen with the glycogenin dimer remaining covalently attached to the non-reducing end in the centre of the globule.]]
'''Glycogenin''' (Glycogenin glucosyltransferase, [[EC]] 2.4.1.186) is a [[transferase]] responsible for the biosynthesis of glycogen; an important storage form of glucose in the body.  It is a unique enzyme in that it is primer, substrate, catalyst, and product of its enzymatic reaction and extension process of glycogen biosynthesis.  This is initiated by its ability to transfer glucose from UDP-glucose to form an oligosaccharide of glucose units that is covalently attached to itself at Tyr-194 in a multistep reaction mechanism <ref name="one"> PMID:12051921 </ref>.  It is placed in glycosyltransferase family 8 becuase it contains highly conserved motifs that are common to glycosyltransferases such as lipopolysaccharide glucose and galactose transferases and galactinol synthases <ref name="two"> PMID:9345621 </ref>.  
'''Glycogenin''' (Glycogenin glucosyltransferase, [[EC]] 2.4.1.186) is a [[transferase]] responsible for the biosynthesis of glycogen; an important storage form of glucose in the body.  It is a unique enzyme in that it is primer, substrate, catalyst, and product of its enzymatic reaction and extension process of glycogen biosynthesis.  This is initiated by its ability to transfer glucose from UDP-glucose to form an oligosaccharide of glucose units that is covalently attached to itself at Tyr-194 in a multistep reaction mechanism <ref name="one"> PMID:12051921 </ref>.  It is placed in glycosyltransferase family 8 becuase it contains highly conserved motifs that are common to glycosyltransferases such as lipopolysaccharide glucose and galactose transferases and galactinol synthases <ref name="two"> PMID:9345621 </ref>.  

Revision as of 11:40, 17 December 2013

Human glycogenin-1 complex with UDP (stick model), ethanediol, Mg+2 (green) and Mn+2 (purple) ions (PDB code 3rmv)

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3D structures of glycogenin

Updated on 17-December-2013

EC - hGYG1 – human
transferase, 1ll2, 3v8y – rGYG1 – rabbit
1zcu, 1zcv, 1zcy, 3usq, 3usr, 3v90 - rGYG1 (mutant)

Glycogenin complex with Mn+2 ion and UDP

3u2t - hGYG1 + Mn
3rmv – hGYG1 (mutant) + Mn + UDP
3rmw - hGYG1 (mutant) + Mn + UDP-glucose
3t7o - hGYG1 + Mn + UDP-glucose + glucose
3u2x - hGYG1 + Mn + UDP + glucose
3qvb, 3t7m, 3t7n - hGYG1 + Mn + UDP
3u2u - hGYG1 + Mn + UDP + maltotetraose
3u2v - hGYG1 + Mn + UDP + maltohexaose
3u2w - hGYG1 (mutant) + Mn + glucose
1zct, 3v8z – rGYG1 + Mn + UDP
1zdf, 1zdg, 3v91 - rGYG1 (mutant) + Mn + UDP-glucose
1ll2 - rGYG1 + Mn + UDP-glucose

References

Proteopedia Page Contributors and Editors (what is this?)

Kim Settle, Michal Harel, Alexander Berchansky, David Canner