spacer
spacer

PDBsum entry 2n7h

Go to PDB code: 
protein Protein-protein interface(s) links
Structural protein PDB id
2n7h

 

 

 

 

Loading ...

 
JSmol PyMol  
Contents
Protein chains
(+ 0 more) 159 a.a.
PDB id:
2n7h
Name: Structural protein
Title: Hybrid structure of the type 1 pilus of uropathogenic e.Coli
Structure: Fima. Chain: a, b, c, d, e, f. Synonym: fimbrial protein, type-1 fimbrial protein subunit a, type-1 fimbrial protein, a chain. Engineered: yes
Source: Escherichia coli. Organism_taxid: 562. Gene: fima, jw4277, pgd_03541, pila. Expressed in: escherichia coli. Expression_system_taxid: 562.
NMR struc: 10 models
Authors: B.Habenstein,A.Loquet,K.Giller,S.Vasa,S.Becker,M.Habeck,A.Lange
Key ref: B.Habenstein et al. (2015). Hybrid Structure of the Type 1 Pilus of Uropathogenic Escherichia coli. Angew Chem Int Ed Engl, 54, 11691-11695. PubMed id: 26267365 DOI: 10.1002/anie.201505065
Date:
11-Sep-15     Release date:   23-Sep-15    
Supersedes: 2mx3
PROCHECK
Go to PROCHECK summary
 Headers
 References

Protein chains
Pfam   ArchSchema ?
P04128  (FIMA1_ECOLI) -  Type-1 fimbrial protein, A chain from Escherichia coli (strain K12)
Seq:
Struc:
182 a.a.
159 a.a.
Key:    PfamA domain  Secondary structure

 

 
DOI no: 10.1002/anie.201505065 Angew Chem Int Ed Engl 54:11691-11695 (2015)
PubMed id: 26267365  
 
 
Hybrid Structure of the Type 1 Pilus of Uropathogenic Escherichia coli.
B.Habenstein, A.Loquet, S.Hwang, K.Giller, S.K.Vasa, S.Becker, M.Habeck, A.Lange.
 
  ABSTRACT  
 
Type 1 pili are filamentous protein assemblies on the surface of Gram-negative bacteria that mediate adhesion to host cells during the infection process. The molecular structure of type 1 pili remains elusive on the atomic scale owing to their insolubility and noncrystallinity. Herein we describe an approach for hybrid-structure determination that is based on data from solution-state NMR spectroscopy on the soluble subunit and solid-state NMR spectroscopy and STEM data on the assembled pilus. Our approach is based on iterative modeling driven by structural information extracted from different sources and provides a general tool to access pseudo atomic structures of protein assemblies with complex subunit folds. By using this methodology, we determined the local conformation of the FimA pilus subunit in the context of the assembled type 1 pilus, determined the exact helical pilus architecture, and elucidated the intermolecular interfaces contributing to pilus assembly and stability with atomic detail.
 

 

spacer

spacer