Insertion derivatives containing segments of up to 16 amino acids identify surface- and periplasm-exposed regions of the FhuA outer membrane receptor of Escherichia coli K-12
- PMID: 8423154
- PMCID: PMC196223
- DOI: 10.1128/jb.175.3.826-839.1993
Insertion derivatives containing segments of up to 16 amino acids identify surface- and periplasm-exposed regions of the FhuA outer membrane receptor of Escherichia coli K-12
Abstract
The FhuA receptor in the outer membrane of Escherichia coli K-12 is involved in the uptake of ferrichrome, colicin M, and the antibiotic albomycin and in infection by phages T1, T5, and phi 80. Fragments of up to 16 amino acid residues were inserted into FhuA and used to determine FhuA active sites and FhuA topology in the outer membrane. For this purpose antibiotic resistance boxes flanked by symmetric polylinkers were inserted into fhuA and subsequently partially deleted. Additional in-frame insertions were generated by mutagenesis with transposon Tn1725. The 68 FhuA protein derivatives examined contained segments of 4, 8, 12, 16, and 22 additional amino acid residues at 34 different locations from residues 5 to 646 of the mature protein. Most of the FhuA derivatives were found in normal amounts in the outer membrane fraction. Half of these were fully active toward all ligands, demonstrating proper insertion into the outer membrane. Seven of the 12- and 16-amino-acid-insertion derivatives (at residues 378, 402, 405, 415, 417, 456, and 646) were active toward all of the ligands and could be cleaved by subtilisin in whole cells, suggesting a surface location of the extra loops at sites which did not affect FhuA function. Two mutants were sensitive to subtilisin (insertions at residues 511 and 321) but displayed a strongly reduced sensitivity to colicin M and to phages phi 80 and T1. Four of the insertion derivatives (at residues 162, 223, 369, and 531) were cleaved only in spheroplasts and probably form loops at the periplasmic side of the outer membrane. The number and size of the proteolytic fragments indicate cleavage at or close to the sites of insertion, which has been proved for five insertions by amino acid sequencing. Most mutants with functional defects were affected in their sensitivity to all ligands, yet frequently to different degrees. Some mutants showed a specifically altered sensitivity to a few ligands; for example, mutant 511-04 was partially resistant only to colicin M, mutant 241-04 was reduced in ferrichrome and albomycin uptake and showed a reduced colicin M sensitivity, and mutant 321-04 was fully resistant to phage T1 and partially resistant to phage phi 80. The altered residues define preferential binding sites for these ligands. Insertions of 4 to 16 residues at positions 69, 70, 402, 530, 564, and 572 resulted in strongly reduced amounts of FhuA in the outer membrane fraction, varying in function from fully active to inactive. These results provide the basis for a model of FhuA organization in the outer membrane.
Similar articles
-
Properties of the FhuA channel in the Escherichia coli outer membrane after deletion of FhuA portions within and outside the predicted gating loop.J Bacteriol. 1996 Dec;178(23):6913-20. doi: 10.1128/jb.178.23.6913-6920.1996. J Bacteriol. 1996. PMID: 8955314 Free PMC article.
-
Inactivation of FhuA at the cell surface of Escherichia coli K-12 by a phage T5 lipoprotein at the periplasmic face of the outer membrane.J Bacteriol. 1994 Aug;176(15):4710-7. doi: 10.1128/jb.176.15.4710-4717.1994. J Bacteriol. 1994. PMID: 8045901 Free PMC article.
-
Insertion mutagenesis of the gene encoding the ferrichrome-iron receptor of Escherichia coli K-12.J Bacteriol. 1990 Apr;172(4):1861-9. doi: 10.1128/jb.172.4.1861-1869.1990. J Bacteriol. 1990. PMID: 2156805 Free PMC article.
-
Energy-coupled transport through the outer membrane of Escherichia coli small deletions in the gating loop convert the FhuA transport protein into a diffusion channel.FEBS Lett. 1994 Jun 6;346(1):59-64. doi: 10.1016/0014-5793(94)00431-5. FEBS Lett. 1994. PMID: 7515827 Review.
-
Transport of iron across the outer membrane.Biol Met. 1991;4(1):14-22. doi: 10.1007/BF01135552. Biol Met. 1991. PMID: 1854585 Review.
Cited by
-
Topology of the outer membrane phospholipase A of Salmonella typhimurium.J Bacteriol. 1997 Jun;179(11):3443-50. doi: 10.1128/jb.179.11.3443-3450.1997. J Bacteriol. 1997. PMID: 9171386 Free PMC article.
-
Prediction by a neural network of outer membrane beta-strand protein topology.Protein Sci. 1998 Nov;7(11):2413-20. doi: 10.1002/pro.5560071119. Protein Sci. 1998. PMID: 9828008 Free PMC article.
-
Mutational analysis of a bifunctional ferrisiderophore receptor and signal-transducing protein from Pseudomonas aeruginosa.J Bacteriol. 2005 Jul;187(13):4514-20. doi: 10.1128/JB.187.13.4514-4520.2005. J Bacteriol. 2005. PMID: 15968062 Free PMC article.
-
The Role of Extracellular Loops in the Folding of Outer Membrane Protein X (OmpX) of Escherichia coli.Front Mol Biosci. 2022 Jul 14;9:918480. doi: 10.3389/fmolb.2022.918480. eCollection 2022. Front Mol Biosci. 2022. PMID: 35911955 Free PMC article.
-
An alternative topological model for Escherichia coli OmpA.Protein Sci. 1996 Jan;5(1):170-3. doi: 10.1002/pro.5560050122. Protein Sci. 1996. PMID: 8771211 Free PMC article.
References
Publication types
MeSH terms
Substances
LinkOut - more resources
Full Text Sources
Other Literature Sources
Molecular Biology Databases