Home LiteratureArticle Details
PMID: 2670890 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S.

Mutations that improve export of maltose-binding protein in SecB- cells of Escherichia coli.

Journal of bacteriology ·Vol. 171 ·No. 9 ·1989-09-00 ·Pages 4640-7

Collier DN, Bassford PJ

Abstract

It previously has been proposed that the Escherichia coli SecB protein promotes the export of the maltose-binding protein (MBP) from the cytoplasm by preventing the folding of the precursor MBP (preMBP) into a translocation-incompetent conformation. The export of wild-type MBP is only partially blocked in SecB- cells. In contrast, the export of MBP16-1, an MBP species with a defective signal peptide, is totally dependent on SecB; hence, SecB- cells that synthesize MBP16-1 are unable to utilize maltose as a sole carbon source. The selection of Mal+ revertants primarily yielded mutants with alterations in the MBP16-1 signal peptide that permitted SecB-independent MBP export to the periplasm to various extents. Although each of these alterations increased the overall hydrophobicity of the signal peptide, it was not possible to strictly equate changes in hydrophobicity with the degree of SecB-independent export. Somewhat unexpectedly, two mutants were obtained in which MBP export in SecB- cells was markedly superior to that of the wild-type MBP. Although wild-type MBP is not cotranslationally translocated in SecB- cells, the two mutant proteins designated MBP172 and MBP173 exhibited significant cotranslational export in the absence of SecB. Thus, the role of SecB was partially supplanted by a signal peptide that promoted more rapid movement of MBP through the export pathway. When preMBP included the MBP172 signal peptide as well as an alteration in the mature moiety that slows folding, the SecB requirement for maximal MBP export efficiency was almost totally eliminated. These results provide additional strong support for the proposed antifolding role of SecB in MBP export.

MeSH Terms
ATP-Binding Cassette Transporters Amino Acid Sequence Base Sequence Carrier Proteins/genetics DNA, Bacterial/genetics,isolation & purification Escherichia coli/genetics,growth & development Escherichia coli Proteins Genetic Linkage Glycerol/metabolism Kinetics Maltose/metabolism Maltose-Binding Proteins Membrane Proteins/genetics Molecular Sequence Data Monosaccharide Transport Proteins Mutation Protein Biosynthesis Protein Processing, Post-Translational
Chemicals
ATP-Binding Cassette Transporters Carrier Proteins DNA, Bacterial Escherichia coli Proteins Maltose-Binding Proteins Membrane Proteins Monosaccharide Transport Proteins maltose transport system, E coli Maltose Glycerol
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Collier D N
Department of Microbiology and Immunology, School of Medicine, University of North Carolina, Chapel Hill 27599-7290.
Bassford P J
References (40)
40 references, click to expand
  1. Post-translational export of maltose-binding protein in Escherichia coli strains harboring malE signal sequence mutations and either prl+ or prl suppressor alleles.
    J Biol Chem. 1985 Nov 25;260(27):14832-7 PMID: 3902840
  2. Transposition and fusion of the lac genes to selected promoters in Escherichia coli using bacteriophage lambda and Mu.
    J Mol Biol. 1976 Jul 5;104(3):541-55 PMID: 781293
  3. Processing in vivo of precursor maltose-binding protein in Escherichia coli occurs post-translationally as well as co-translationally.
    J Biol Chem. 1981 Mar 10;256(5):2504-7 PMID: 7007385
  4. Active transport of maltose in Escherichia coli K12. Role of the periplasmic maltose-binding protein and evidence for a substrate recognition site in the cytoplasmic membrane.
    J Biol Chem. 1982 May 25;257(10):5455-61 PMID: 7040366
  5. Localization and processing of outer membrane and periplasmic proteins in Escherichia coli strains harboring export-specific suppressor mutations.
    J Biol Chem. 1982 May 25;257(10):5852-60 PMID: 7040375
  6. A simple method for displaying the hydropathic character of a protein.
    J Mol Biol. 1982 May 5;157(1):105-32 PMID: 7108955
  7. Mutations in a new gene, secB, cause defective protein localization in Escherichia coli.
    J Bacteriol. 1983 Apr;154(1):253-60 PMID: 6403503
  8. Sequence of the leader peptidase gene of Escherichia coli and the orientation of leader peptidase in the bacterial envelope.
    J Biol Chem. 1983 Oct 10;258(19):12073-80 PMID: 6311837
  9. Analysis of cotranslational proteolytic processing of nascent chains using two-dimensional gel electrophoresis.
    Methods Enzymol. 1983;97:77-85 PMID: 6361484
  10. Intragenic suppressor mutations that restore export of maltose binding protein with a truncated signal peptide.
    Cell. 1984 May;37(1):243-52 PMID: 6327054
  11. Cloning vectors that yield high levels of single-stranded DNA for rapid DNA sequencing.
    Gene. 1984 Feb;27(2):183-91 PMID: 6327466
  12. The synthesis of export-defective proteins can interfere with normal protein export in Escherichia coli.
    J Biol Chem. 1984 Oct 10;259(19):12193-200 PMID: 6384220
  13. Evidence for specificity at an early step in protein export in Escherichia coli.
    J Bacteriol. 1985 Jul;163(1):267-74 PMID: 3891730
  14. In vivo and in vitro synthesis of Escherichia coli maltose-binding protein under regulatory control of the lacUV5 promoter-operator.
    J Bacteriol. 1985 Nov;164(2):665-73 PMID: 3902794
  15. Intragenic reversion mutations that improve export of maltose-binding protein in Escherichia coli malE signal sequence mutants.
    J Biol Chem. 1986 Mar 5;261(7):3389-95 PMID: 3512555
  16. Correlation of competence for export with lack of tertiary structure of the mature species: a study in vivo of maltose-binding protein in E. coli.
    Cell. 1986 Sep 12;46(6):921-8 PMID: 3530497
  17. Kinetic analysis of lamB mutants suggests the signal sequence plays multiple roles in protein export.
    J Biol Chem. 1986 Nov 15;261(32):15075-80 PMID: 3533933
  18. Mechanism of protein translocation across the endoplasmic reticulum membrane.
    Annu Rev Cell Biol. 1986;2:499-516 PMID: 3030381
  19. Suppression of a signal sequence mutation by an amino acid substitution in the mature portion of the maltose-binding protein.
    J Bacteriol. 1987 May;169(5):1794-800 PMID: 3553148
  20. Mutational alterations affecting the export competence of a truncated but fully functional maltose-binding protein signal peptide.
    J Bacteriol. 1987 Jun;169(6):2345-51 PMID: 3294786
  21. Export of unprocessed precursor maltose-binding protein to the periplasm of Escherichia coli cells.
    J Bacteriol. 1987 Jun;169(6):2352-9 PMID: 3294787
  22. Trigger factor: a soluble protein that folds pro-OmpA into a membrane-assembly-competent form.
    Proc Natl Acad Sci U S A. 1987 Aug;84(15):5216-20 PMID: 3299381
  23. Sequence information required for protein translocation from the cytoplasm.
    J Bacteriol. 1987 Dec;169(12):5339-42 PMID: 3316179
  24. Rapid and efficient site-specific mutagenesis without phenotypic selection.
    Methods Enzymol. 1987;154:367-82 PMID: 3323813
  25. Random cloning and sequencing by the M13/dideoxynucleotide chain termination method.
    Methods Enzymol. 1987;155:51-93 PMID: 3323821
  26. Modulation of folding pathways of exported proteins by the leader sequence.
    Science. 1988 Feb 26;239(4843):1033-5 PMID: 3278378
  27. A subfamily of stress proteins facilitates translocation of secretory and mitochondrial precursor polypeptides.
    Nature. 1988 Apr 28;332(6167):800-5 PMID: 3282178
  28. 70K heat shock related proteins stimulate protein translocation into microsomes.
    Nature. 1988 Apr 28;332(6167):805-10 PMID: 3282179
  29. The antifolding activity of SecB promotes the export of the E. coli maltose-binding protein.
    Cell. 1988 Apr 22;53(2):273-83 PMID: 2834066
  30. 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
  31. Protein translocation across membranes.
    Science. 1988 Sep 9;241(4871):1307-13 PMID: 2842866
  32. ProOmpA is stabilized for membrane translocation by either purified E. coli trigger factor or canine signal recognition particle.
    Cell. 1988 Sep 23;54(7):1003-11 PMID: 2843289
  33. Retardation of folding as a possible means of suppression of a mutation in the leader sequence of an exported protein.
    J Biol Chem. 1988 Oct 15;263(29):14790-3 PMID: 3049590
  34. Role of the leader peptide of maltose-binding protein in two steps of the export process.
    J Bacteriol. 1988 Dec;170(12):5654-61 PMID: 3056909
  35. Transient association of newly synthesized unfolded proteins with the heat-shock GroEL protein.
    Nature. 1988 Nov 17;336(6196):254-7 PMID: 2904124
  36. Purified secB protein of Escherichia coli retards folding and promotes membrane translocation of the maltose-binding protein in vitro.
    Proc Natl Acad Sci U S A. 1988 Dec;85(23):8978-82 PMID: 2848249
  37. The mature portion of Escherichia coli maltose-binding protein (MBP) determines the dependence of MBP on SecB for export.
    J Bacteriol. 1989 Feb;171(2):813-8 PMID: 2644237
  38. Purification of the Escherichia coli secB gene product and demonstration of its activity in an in vitro protein translocation system.
    J Biol Chem. 1989 Feb 5;264(4):2242-9 PMID: 2644258
  39. Factors influencing the in vitro translocation of the Escherichia coli maltose-binding protein.
    J Biol Chem. 1989 Feb 15;264(5):3021-7 PMID: 2644276
  40. Preprotein conformation: the year's major theme in translocation studies.
    Trends Biochem Sci. 1988 Dec;13(12):471-4 PMID: 2855285
Article Info
Journal
Journal of bacteriology
Abbr.
J Bacteriol
ISSN
0021-9193
Published
1989-09-00
Pages
4640-7
Language
English
Region
United States
NLM ID
2985120R
PMCID
PMC210262
Subset
IM
Grants
NIAID NIH HHS · AI17292 · United States
Databases
GENBANK
M29860
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