Standard Mode | Switch to Expert Mode | Login to view past jobsRetrieve Phyre Job Id
 
Subscribe to Phyre at Google Groups
Email:
Visit Phyre at Google Groups
 Protein Homology/analogY Recognition Engine V 2.0


 

Fold library entry viewer: c4e8oB_

Fold library idPDB HeaderMoleculeTitle
c4e8oB_PDB header: transferaseChain: B: PDB Molecule: aac(6')-ih protein;PDBTitle: crystal structure of aminoglycoside antibiotic 6'-o-acetyltransferase2 aac(6')-ih from acinetobacter baumannii


Added to library: Sat Apr 7 18:18:46 2012
 
Links to external resources


 1........10.........20.........30.........40.........50.........60.........70
Sequence QGMNIMPISESQLSDWLALRCLLWPDHEDVHLQEMRQLITQAHRLQLLAYTDTQQAIAMLEASIRYEYVN
Predicted secondary structure


























SS confidence





































































Known secondary structure (DSSP)




GGGS


TT
TT
TT


S

T
 .........80.........90.........100.........110.........120.........130.........140
Sequence GTQTSPVAFLEGIFVLPEYRRSGIATGLVQQVEIWAKQFACTEFASDAALDNQISHAMHQALGFHETERV
Predicted secondary structure






















SS confidence





































































Known secondary structure (DSSP) T
SSSS
GGGGGGTTT






TT
TT






 ........
Sequence VYFKKNIG
Predicted secondary structure

SS confidence







Known secondary structure (DSSP)








Download:PDB structure FASTA sequence

Hidden Markov model

Image coloured by rainbow N → C terminus
Interactive 3D view in JSmol


Phyre is now FREE for commercial users!

All images and data generated by Phyre2 are free to use in any publication with acknowledgement

Accessibility Statement
Please cite: The Phyre2 web portal for protein modeling, prediction and analysis
Kelley LA et al. Nature Protocols 10, 845-858 (2015) [paper] [Citation link]
 
© Structural Bioinformatics Group, Imperial College, London
Michael Sternberg 
Disclaimer
Terms and Conditions
Structural Biology Group logo Imperial logo
BBSRC logo
Phyre2 is part of Genome3D