The gene for gonococcal transferrin-binding protein 1 (TBP1) was cloned behind an inducible promoter in Escherichia coli. The resultant strain was capable of binding human transferrin with the same specificity as that of the gonococcus. E. coli expressing TBP1 did not internalize transferrin-bound iron or grow on transferrin as a sole iron source
The transferrin iron acquisition system of Neisseria consists of two dissimilar proteins, transferri...
Although Neisseria meningitidis does not produce siderophores, it is able to obtain iron from human ...
FrpB (for Fe-regulated protein B) is a 76-kDa outer membrane protein that is part of the iron regulo...
The gene for gonococcal transferrin-binding protein 1 (TBP1) was cloned behind an inducible promoter...
The pathogenic Neisseria species are capable of utilizing transferrin as their sole source of iron. ...
Pathogenic Neisseria species have been shown to scavenge iron from transferrin (Tf), although the me...
Neisseria gonorrhoeae is capable of iron utilization from human transferrin in a receptor-mediated e...
The availability of free iron in vivo is strictly limited, in part by the iron-binding protein trans...
Neisseria gonorrhoeae is a gram-negative pathogen that is capable of satisfying its iron requirement...
The molecular weight heterogeneities of Tbp1 and Tbp2 among a panel of 45 gonococcal isolates were a...
Neisseria gonorrhoeae is an obligate human pathogen that requires iron for its survival within the h...
Transferrin (TF) and lactoferrin (LF) are probably the major sources of iron (Fe) for Neisseria gono...
Haemophilus influenzae, a strict human pathogen, acquires iron in vivo through the direct binding an...
Neisseria gonorrhoeae acquires iron (Fe) efficiently from lactoferrin (LF). A 103-kDa gonococcal out...
Neisseria meningitidis is a Gram negative bacterium which does not produce siderophores and is able ...
The transferrin iron acquisition system of Neisseria consists of two dissimilar proteins, transferri...
Although Neisseria meningitidis does not produce siderophores, it is able to obtain iron from human ...
FrpB (for Fe-regulated protein B) is a 76-kDa outer membrane protein that is part of the iron regulo...
The gene for gonococcal transferrin-binding protein 1 (TBP1) was cloned behind an inducible promoter...
The pathogenic Neisseria species are capable of utilizing transferrin as their sole source of iron. ...
Pathogenic Neisseria species have been shown to scavenge iron from transferrin (Tf), although the me...
Neisseria gonorrhoeae is capable of iron utilization from human transferrin in a receptor-mediated e...
The availability of free iron in vivo is strictly limited, in part by the iron-binding protein trans...
Neisseria gonorrhoeae is a gram-negative pathogen that is capable of satisfying its iron requirement...
The molecular weight heterogeneities of Tbp1 and Tbp2 among a panel of 45 gonococcal isolates were a...
Neisseria gonorrhoeae is an obligate human pathogen that requires iron for its survival within the h...
Transferrin (TF) and lactoferrin (LF) are probably the major sources of iron (Fe) for Neisseria gono...
Haemophilus influenzae, a strict human pathogen, acquires iron in vivo through the direct binding an...
Neisseria gonorrhoeae acquires iron (Fe) efficiently from lactoferrin (LF). A 103-kDa gonococcal out...
Neisseria meningitidis is a Gram negative bacterium which does not produce siderophores and is able ...
The transferrin iron acquisition system of Neisseria consists of two dissimilar proteins, transferri...
Although Neisseria meningitidis does not produce siderophores, it is able to obtain iron from human ...
FrpB (for Fe-regulated protein B) is a 76-kDa outer membrane protein that is part of the iron regulo...