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PDBsum entry 5kf8

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protein ligands links
Transferase PDB id
5kf8

 

 

 

 

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Contents
Protein chain
317 a.a.
Ligands
ACO
EDO ×2
GCS
EP1
COA
Waters ×201
PDB id:
5kf8
Name: Transferase
Title: X-ray structure of a glucosamine n-acetyltransferase from clostridium acetobutylicum in complex with glucosamine
Structure: Predicted acetyltransferase. Chain: a. Engineered: yes
Source: Clostridium acetobutylicum (strain atcc 824 / dsm 792 / jcm 1419 / lmg 5710 / vkm b-1787). Organism_taxid: 272562. Strain: atcc 824 / dsm 792 / jcm 1419 / lmg 5710 / vkm b-1787. Gene: ca_c0184. Expressed in: escherichia coli. Expression_system_taxid: 562.
Resolution:
1.90Å     R-factor:   0.163     R-free:   0.210
Authors: H.M.Holden,J.B.Thoden,B.J.Dopkins,P.A.Tipton
Key ref: B.J.Dopkins et al. (2016). Structural Studies on a Glucosamine/Glucosaminide N-Acetyltransferase. Biochemistry, 55, 4495-4508. PubMed id: 27348258 DOI: 10.1021/acs.biochem.6b00536
Date:
12-Jun-16     Release date:   06-Jul-16    
PROCHECK
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 Headers
 References

Protein chain
Pfam   ArchSchema ?
Q97ML2  (Q97ML2_CLOAB) -  Predicted acetyltransferase from Clostridium acetobutylicum (strain ATCC 824 / DSM 792 / JCM 1419 / IAM 19013 / LMG 5710 / NBRC 13948 / NRRL B-527 / VKM B-1787 / 2291 / W)
Seq:
Struc:
320 a.a.
317 a.a.
Key:    PfamA domain  Secondary structure

 Enzyme reactions 
   Enzyme class: E.C.?
[IntEnz]   [ExPASy]   [KEGG]   [BRENDA]

 

 
DOI no: 10.1021/acs.biochem.6b00536 Biochemistry 55:4495-4508 (2016)
PubMed id: 27348258  
 
 
Structural Studies on a Glucosamine/Glucosaminide N-Acetyltransferase.
B.J.Dopkins, P.A.Tipton, J.B.Thoden, H.M.Holden.
 
  ABSTRACT  
 
Glucosamine/glucosaminide N-acetyltransferase or GlmA catalyzes the transfer of an acetyl group from acetyl CoA to the primary amino group of glucosamine. The enzyme from Clostridium acetobutylicum is thought to be involved in cell wall rescue. In addition to glucosamine, GlmA has been shown to function on di- and trisaccharides of glucosamine as well. Here we present a structural and kinetic analysis of the enzyme. For this investigation, eight structures were determined to resolutions of 2.0 Å or better. The overall three-dimensional fold of GlmA places it into the tandem GNAT superfamily. Each subunit of the dimer folds into two distinct domains which exhibit high three-dimensional structural similarity. Whereas both domains bind acetyl CoA, it is the C-terminal domain that is catalytically competent. On the basis of the various structures determined in this investigation, two amino acid residues were targeted for further study: Asp 287 and Tyr 297. Although their positions in the active site suggested that they may play key roles in catalysis by functioning as active site bases and acids, respectively, this was not borne out by characterization of the D287N and Y297F variants. The kinetic properties revealed that both residues were important for substrate binding but had no critical roles as acid/base catalysts. Kinetic analyses also indicated that GlmA follows an ordered mechanism with acetyl CoA binding first followed by glucosamine. The product N-acetylglucosamine is then released prior to CoA. The investigation described herein provides significantly new information on enzymes belonging to the tandem GNAT superfamily.
 

 

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