Publications
Found 157 results
Author Title [ Type
Filters: First Letter Of Last Name is B [Clear All Filters]
Structure and membrane affinity of a suite of amphiphilic siderophores produced by a marine bacterium.. Proc Natl Acad Sci U S A. 100(7):3754-9.
.
2003. Siderophores of Marinobacter aquaeolei: petrobactin and its sulfonated derivatives.. Biometals. 22(4):565-71.
.
2009. Siderophores and mussel foot proteins: the role of catechol, cations, and metal coordination in surface adhesion.. J Biol Inorg Chem. 22(5):739-749.
.
2017. A Siderophore from a Marine Bacterium with an Exceptional Ferric Ion Stability Constant, . Nature. 366:455-457.
.
1993. Self-assembling amphiphilic siderophores from marine bacteria.. Science. 287(5456):1245-7.
.
2000. On the Selectivity of Vanadium Bromoperoxidase. Proceedings of the Royal Netherlands Academy of Arts and Sciences. :55-69.
.
1997. Ruckerbactin Produced by YRB Is a Diastereomer of the Siderophore Trivanchrobactin Produced by DS40M4.. J Nat Prod. 85(1):264-269.
.
2022. The role of vanadium bromoperoxidase in the biosynthesis of halogenated marine natural products.. Nat Prod Rep. 21(1):180-8.
.
2004. On the regiospecificity of vanadium bromoperoxidase.. J Am Chem Soc. 123(14):3289-94.
.
2001. Reactivity of recombinant and mutant vanadium bromoperoxidase from the red alga Corallina officinalis.. J Inorg Biochem. 91(1):59-69.
.
2002. Reactivity of recombinant and mutant vanadium bromoperoxidase from the red alga Corallina officinalis.. J Inorg Biochem. 91(1):59-69.
.
2002. Reactivation of Vanadate-Inhibited Enzymes with Desferrioxamine B, a Vanadium(V) Chelator. Inorg. Chim. Acta. 163:1-3.
.
1989. Probing the Substrate Specificity of Vanadium-Containing Bromoperoxidases. Recueil. 106:407.
.
1987. Probing the Substrate Specificity of Vanadium-Containing Bromoperoxidases. Recueil. 106:407.
.
1987. Precursor-directed biosynthesis of catechol compounds in Acinetobacter bouvetii DSM 14964.. Chem Commun (Camb). 56(81):12222-12225.
.
2020. Photoreactivity of iron(III)-aerobactin: photoproduct structure and iron(III) coordination.. Inorg Chem. 45(15):6028-33.
.
2006. Photochemical reactivity of siderophores produced by marine heterotrophic bacteria and cyanobacteria based on characteristic Fe(III) binding groups. Limnol. Oceanogr. 48:1069-1078.
.
2003. Photochemical reactivity of siderophores produced by marine heterotrophic bacteria and cyanobacteria based on characteristic Fe(III) binding groups. Limnol. Oceanogr. 48:1069-1078.
.
2003. Photochemical reactivity of siderophores produced by marine heterotrophic bacteria and cyanobacteria based on characteristic Fe(III) binding groups. Limnol. Oceanogr. 48:1069-1078.
.
2003. Photochemical cycling of iron in the surface ocean mediated by microbial iron(III)-binding ligands.. Nature. 413(6854):409-13.
.
2001. Photochemical cycling of iron in the surface ocean mediated by microbial iron(III)-binding ligands.. Nature. 413(6854):409-13.
.
2001. Photochemical cycling of iron in the surface ocean mediated by microbial iron(III)-binding ligands.. Nature. 413(6854):409-13.
.
2001. Photoactive siderophores: Structure, function and biology.. J Inorg Biochem. 221:111457.
.
2021. Petrobactin sulfonate, a new siderophore produced by the marine bacterium Marinobacter hydrocarbonoclasticus.. J Nat Prod. 67(11):1897-9.
.
2004. Petrobactin sulfonate, a new siderophore produced by the marine bacterium Marinobacter hydrocarbonoclasticus.. J Nat Prod. 67(11):1897-9.
.
2004.