Topology of the ExbB protein in the cytoplasmic membrane of Escherichia coli.

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Published in J Biol Chem on March 15, 1993

Authors

K Kampfenkel1, V Braun

Author Affiliations

1: University of Tübingen, Germany.

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Iron transport systems of Serratia marcescens. J Bacteriol (1992) 1.27

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Chromosomal genes for ColV plasmid-determined iron(III)-aerobactin transport in Escherichia coli. J Bacteriol (1982) 1.25

Iron supply of Escherichia coli with polymer-bound ferricrocin. Eur J Biochem (1979) 1.24

In vivo biosynthesis of murein-lipoprotein of the outer membrane of E. coli. FEBS Lett (1973) 1.23

Identification of the sid outer membrane receptor protein in Salmonella typhimurium SL1027. Mol Gen Genet (1977) 1.22

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