Home LiteratureArticle Details
PMID: 11169117 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Substrate complexes and domain organization of the Salmonella flagellar export chaperones FlgN and FliT.

Molecular microbiology ·Vol. 39 ·No. 3 ·2001-02-00 ·Pages 781-91

Bennett JC, Thomas J, Fraser GM, Hughes C

Abstract

The flagellar proteins FlgN and FliT have been proposed to act as substrate-specific export chaperones, facilitating incorporation of the enterobacterial hook-associated axial proteins (HAPs) FlgK/FlgL and FliD into the growing flagellum. In Salmonella typhimurium flgN and fliT mutants, the export of target HAPs was reduced, concomitant with loss of unincorporated flagellin into the surrounding medium. Gel filtration chromatography of wild-type S. typhimurium cell extracts identified stable pools of FlgN and FliT homodimers in the cytosol, but no chaperone-substrate complexes were evident. Nevertheless, stable unique complexes were assembled efficiently in vitro by co-incubation of FlgN and FliT with target HAPs purified from recombinant Escherichia coli. The sizes of the chaperone-substrate complexes indicated that, in each case, a chaperone homodimer binds to a substrate monomer. FlgN prevented in vitro aggregation of FlgK monomers, generating a soluble form of the HAP. Recombinant polypeptides spanning the potentially amphipathic C-terminal regions of FlgN or FliT could not complement in trans the chaperone deficiency of the respective flgN and fliT mutants, but efficient flagellar assembly was restored by homodimeric translational fusions of these domains to glutathione S-transferase, which bound FlgK and FlgL like the wild-type FlgN. These data provide further evidence for the substrate-specific chaperone function of FlgN and FliT and indicate that these chaperones comprise common N- and C-terminal domains mediating homodimerization and HAP substrate binding respectively. In support of this view, the flgN mutation was specifically complemented by a hybrid chaperone comprising the N-terminal half of FliT and the C-terminal half of FlgN.

MeSH Terms
Bacterial Proteins/chemistry,genetics,metabolism Chromogenic Compounds Cytoplasm/metabolism Dimerization Flagella/metabolism Molecular Chaperones/metabolism Mutation Salmonella typhimurium/genetics,growth & development,metabolism
Chemicals
Bacterial Proteins Chromogenic Compounds FlgN protein, Bacteria Molecular Chaperones hook protein, bacterial flagellum fliT protein, Bacteria
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Bennett J C
Department of Pathology, University of Cambridge, Tennis Court Road, Cambridge CB2 1QP, UK.
Thomas J
Fraser G M
Hughes C
References (39)
39 references, click to expand
  1. Scissors-grip model for DNA recognition by a family of leucine zipper proteins.
    Science. 1989 Nov 17;246(4932):911-6 PMID: 2683088
  2. Size of the export channel in the flagellar filament of Salmonella typhimurium.
    Ultramicroscopy. 1993 Feb;49(1-4):417-25 PMID: 8475605
  3. Single-step purification of polypeptides expressed in Escherichia coli as fusions with glutathione S-transferase.
    Gene. 1988 Jul 15;67(1):31-40 PMID: 3047011
  4. Effects of Escherichia coli secB mutations on pre-maltose binding protein conformation and export kinetics.
    J Biol Chem. 1988 Aug 15;263(23):11554-8 PMID: 3042772
  5. A novel suicide vector and its use in construction of insertion mutations: osmoregulation of outer membrane proteins and virulence determinants in Vibrio cholerae requires toxR.
    J Bacteriol. 1988 Jun;170(6):2575-83 PMID: 2836362
  6. Interposon mutagenesis of soil and water bacteria: a family of DNA fragments designed for in vitro insertional mutagenesis of gram-negative bacteria.
    Gene. 1987;52(2-3):147-54 PMID: 3038679
  7. Use of bacteriophage T7 RNA polymerase to direct selective high-level expression of cloned genes.
    J Mol Biol. 1986 May 5;189(1):113-30 PMID: 3537305
  8. Translation/secretion coupling by type III secretion systems.
    Cell. 2000 Aug 18;102(4):487-97 PMID: 10966110
  9. Bacterial protein translocase: a unique molecular machine with an army of substrates.
    FEBS Lett. 2000 Jun 30;476(1-2):18-21 PMID: 10878242
  10. From flagellum assembly to virulence: the extended family of type III export chaperones.
    Trends Microbiol. 2000 May;8(5):202-4 PMID: 10785634
  11. Rapid turnover of FlhD and FlhC, the flagellar regulon transcriptional activator proteins, during Proteus swarming.
    J Bacteriol. 2000 Feb;182(3):833-6 PMID: 10633123
  12. Predicting coiled coils from protein sequences.
    Science. 1991 May 24;252(5009):1162-4 PMID: 2031185
  13. Energetically distinct early and late stages of HlyB/HlyD-dependent secretion across both Escherichia coli membranes.
    EMBO J. 1991 Nov;10(11):3263-72 PMID: 1915293
  14. Construction of an eae deletion mutant of enteropathogenic Escherichia coli by using a positive-selection suicide vector.
    Infect Immun. 1991 Dec;59(12):4310-7 PMID: 1937792
  15. Morphological pathway of flagellar assembly in Salmonella typhimurium.
    J Mol Biol. 1992 Jul 20;226(2):433-46 PMID: 1640458
  16. Dimorphic transition in Escherichia coli and Salmonella typhimurium: surface-induced differentiation into hyperflagellate swarmer cells.
    Proc Natl Acad Sci U S A. 1994 Aug 30;91(18):8631-5 PMID: 8078935
  17. Use of T7 RNA polymerase to direct expression of cloned genes.
    Methods Enzymol. 1990;185:60-89 PMID: 2199796
  18. Tight regulation, modulation, and high-level expression by vectors containing the arabinose PBAD promoter.
    J Bacteriol. 1995 Jul;177(14):4121-30 PMID: 7608087
  19. Functional analysis of the flagellar genes in the fliD operon of Salmonella typhimurium.
    Microbiology. 1995 Jul;141 ( Pt 7):1715-22 PMID: 7551038
  20. The chaperone-like protein YerA of Yersinia pseudotuberculosis stabilizes YopE in the cytoplasm but is dispensible for targeting to the secretion loci.
    Mol Microbiol. 1995 May;16(4):635-47 PMID: 7476159
  21. Glutathione S-transferase fusion proteins mimic receptor dimerization in permeabilized cells.
    Anal Biochem. 1995 Nov 1;231(2):455-8 PMID: 8595002
  22. Self-assembly of the filament capping protein, FliD, of bacterial flagella into an annular structure.
    J Mol Biol. 1996 Jun 21;259(4):679-86 PMID: 8683574
  23. Customized secretion chaperones in pathogenic bacteria.
    Mol Microbiol. 1996 Apr;20(2):255-62 PMID: 8733225
  24. The cytosolic SycE and SycH chaperones of Yersinia protect the region of YopE and YopH involved in translocation across eukaryotic cell membranes.
    Mol Microbiol. 1996 Jun;20(6):1261-71 PMID: 8809777
  25. Flagellar assembly in Salmonella typhimurium.
    Mol Microbiol. 1996 Jan;19(1):1-5 PMID: 8821931
  26. Enzymatic characterization of FliI. An ATPase involved in flagellar assembly in Salmonella typhimurium.
    J Biol Chem. 1996 Dec 13;271(50):31981-8 PMID: 8943245
  27. A motile but non-swarming mutant of Proteus mirabilis lacks FlgN, a facilitator of flagella filament assembly.
    Mol Microbiol. 1997 Aug;25(3):597-604 PMID: 9302021
  28. EspB and EspD require a specific chaperone for proper secretion from enteropathogenic Escherichia coli.
    Mol Microbiol. 1998 Mar;27(6):1247-60 PMID: 9570409
  29. Mechanism of self-association and filament capping by flagellar HAP2.
    J Mol Biol. 1998 Dec 18;284(5):1399-416 PMID: 9878359
  30. Components of the Salmonella flagellar export apparatus and classification of export substrates.
    J Bacteriol. 1999 Mar;181(5):1388-94 PMID: 10049367
  31. Substrate-specific binding of hook-associated proteins by FlgN and FliT, putative chaperones for flagellum assembly.
    Mol Microbiol. 1999 May;32(3):569-80 PMID: 10320579
  32. Yersinia enterocolitica type III secretion. On the role of SycE in targeting YopE into HeLa cells.
    J Biol Chem. 1999 Jul 30;274(31):22102-8 PMID: 10419539
  33. Enteropathogenic Escherichia coli translocated intimin receptor, Tir, requires a specific chaperone for stable secretion.
    Mol Microbiol. 1999 Sep;33(6):1162-75 PMID: 10510231
  34. Identification of CesT, a chaperone for the type III secretion of Tir in enteropathogenic Escherichia coli.
    Mol Microbiol. 1999 Sep;33(6):1176-89 PMID: 10510232
  35. Extracellular association and cytoplasmic partitioning of the IpaB and IpaC invasins of S. flexneri.
    Cell. 1994 Nov 4;79(3):515-25 PMID: 7954817
  36. Flagellar hook and hook-associated proteins of Salmonella typhimurium and their relationship to other axial components of the flagellum.
    J Mol Biol. 1990 Jun 20;213(4):819-32 PMID: 2193164
  37. Stoichiometric analysis of the flagellar hook-(basal-body) complex of Salmonella typhimurium.
    J Mol Biol. 1990 Mar 20;212(2):377-87 PMID: 2181149
  38. A mutant hook-associated protein (HAP3) facilitates torsionally induced transformations of the flagellar filament of Escherichia coli.
    J Mol Biol. 1994 Apr 29;238(2):173-86 PMID: 8158647
  39. SycE, a chaperone-like protein of Yersinia enterocolitica involved in Ohe secretion of YopE.
    Mol Microbiol. 1993 Apr;8(1):123-31 PMID: 8497188
Article Info
Journal
Molecular microbiology
Abbr.
Mol Microbiol
ISSN
0950-382X
Published
2001-02-00
Pages
781-91
Language
English
Region
England
NLM ID
8712028
PMCID
PMC2528293
Subset
IM
Grants
Wellcome Trust · 040330 · United Kingdom
Analysis Services
Analysis Services

Contact

No. 2 Wenbo Road, Zhangqiu District, Jinan, Shandong

Qilu Normal University · Genelibs Bioinformatics Lab

750 Shunhua Rd, Jinan

2F, Bldg F, University Science Park

Tel: 0531-88819269

WeChat Official Account

Follow our WeChat subscription account for real-time updates and the latest in medical and biological research.


Business Email

E-mail: product@genelibs.com