Affiliation:
1. Mikrobiologie/Membranphysiologie, Universität Tübingen, D-72076 Tübingen, Germany
Abstract
ABSTRACT
The
fhuA
genes of
Salmonella paratyphi
B,
Salmonella typhimurium
, and
Pantoea agglomerans
were sequenced and compared with the known
fhuA
sequence of
Escherichia coli
. The highly similar FhuA proteins displayed the largest difference in the predicted gating loop, which in
E. coli
controls the permeability of the FhuA channel and serves as the principal binding site for the phages T1, T5, and φ80. All the FhuA proteins contained the region in the gating loops required in
E. coli
for ferrichrome and albomycin transport. The three subdomains required for phage binding were contained in the gating loop of
S. paratyphi
B which is infected by the
E. coli
phages, whereas two of the subdomains were deleted in
S. typhimurium
and
P. agglomerans
which are resistant to the
E. coli
phages. Small deletions in a surface loop adjacent to the gating loop, residues 236 to 243 and 236 to 248, inactivated
E. coli
FhuA with regard to transport of ferrichrome and albomycin, but sensitivity to T1 and T5 was fully retained and sensitivity to φ80 and colicin M was reduced 10-fold. Full-size FhuA hybrid proteins of
S. paratyphi
B and
S. typhimurium
displayed
S. paratyphi
B FhuA activity when the hybrids contained two-thirds of either the N- or the C-terminal portions of
S. paratyphi
B and displayed
S. typhimurium
FhuA activity to phage ES18 when the hybrid contained two-thirds of the N-terminal region of the
S. typhimurium
FhuA. The central segment of the
S. paratyphi
B FhuA flanked on both sides by
S. typhimurium
FhuA regions conferred full sensitivity only to phage T5. The data support the essential role of the gating loop for the transport of ferrichrome and albomycin, identified an additional loop for ferrichrome and albomycin uptake, and suggest that several segments and their proper conformation, determined by the entire FhuA protein, contribute to the multiple FhuA activities.
Publisher
American Society for Microbiology
Subject
Molecular Biology,Microbiology
Cited by
24 articles.
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