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Aminopeptidase

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<StructureSection load='VH9.pdb' size='350' side='right' scene='Journal:JBIC:15/Cv/1' caption='Bacterial leucine aminopeptidase complex with 8-hydroxyquinoline, glycerol, SCN, Zn+2 (magenta), Na+ (cyan) and Cl- (green) ions (PDB code [[3vh9]])'>[[Aminopeptidase|Aminopeptidases]] (AP) ([[EC]] 3) are metal - mostly Zn-dependent enzymes involved in the digestion of proteins. Cytosol AP (Cyt-AP), deblocking AP (DAP) and AP N (APN) remove N-terminal amino acids. The AP are classified by the amino acid which they hydrolyze. Other types of AP are:<br />
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<StructureSection load='VH9.pdb' size='350' side='right' scene='Journal:JBIC:15/Cv/1' caption='Bacterial leucine aminopeptidase complex with 8-hydroxyquinoline, glycerol, SCN, Zn+2 (magenta), Na+ (cyan) and Cl- (green) ions (PDB code [[3vh9]])'>
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__TOC__
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== Function ==
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[[Aminopeptidase|Aminopeptidases]] (AP) ([[EC]] 3) are metal - mostly Zn-dependent enzymes involved in the digestion of proteins. Cytosol AP (Cyt-AP), deblocking AP (DAP) and AP N (APN) remove N-terminal amino acids. The AP are classified by the amino acid which they hydrolyze. Other types of AP are:<br />
* '''Cold-activated AP''' (Col-AP)<br />
* '''Cold-activated AP''' (Col-AP)<br />
* '''Heat stable AP''' from ''Thermus thermophilus'' (AmpT)<br />
* '''Heat stable AP''' from ''Thermus thermophilus'' (AmpT)<br />

Revision as of 09:30, 2 December 2015

Bacterial leucine aminopeptidase complex with 8-hydroxyquinoline, glycerol, SCN, Zn+2 (magenta), Na+ (cyan) and Cl- (green) ions (PDB code 3vh9)

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3D Structures of Aminopeptidase

Updated on 02-December-2015


Additional Resources

For additional information, see:
Amino Acid Synthesis & Metabolism
Streptomyces griseus Aminopeptidase (SGAP)

References

  1. Hanaya K, Suetsugu M, Saijo S, Yamato I, Aoki S. Potent inhibition of dinuclear zinc(II) peptidase, an aminopeptidase from Aeromonas proteolytica, by 8-quinolinol derivatives: inhibitor design based on Zn(2+) fluorophores, kinetic, and X-ray crystallographic study. J Biol Inorg Chem. 2012 Feb 5. PMID:22311113 doi:10.1007/s00775-012-0873-4

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Michal Harel, Alexander Berchansky, David Canner, Joel L. Sussman, Eran Hodis

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