Publications
Stimulating the in situ activity of Geobacter species to remove uranium from the groundwater of a uranium-contaminated aquifer.. Appl Environ Microbiol. 69(10):5884-91.
.
2003. Computational prediction of conserved operons and phylogenetic footprinting of transcription regulatory elements in the metal-reducing bacterial family Geobacteraceae.. J Theor Biol. 230(1):133-44.
.
2004. A dnaT mutant with phenotypes similar to those of a priA2::kan mutant in Escherichia coli K-12.. Genetics. 167(2):569-78.
.
2004. Measurement of SOS expression in individual Escherichia coli K-12 cells using fluorescence microscopy.. Mol Microbiol. 53(5):1343-57.
.
2004. Adaptation to disruption of the electron transfer pathway for Fe(III) reduction in Geobacter sulfurreducens.. J Bacteriol. 187(17):5918-26.
.
2005. Characterization of citrate synthase from Geobacter sulfurreducens and evidence for a family of citrate synthases similar to those of eukaryotes throughout the Geobacteraceae.. Appl Environ Microbiol. 71(7):3858-65.
.
2005. Compartmentalization of lipid biosynthesis in mycobacteria.. J Biol Chem. 280(22):21645-52.
.
2005. Compartmentalization of lipid biosynthesis in mycobacteria.. J Biol Chem. 280(22):21645-52.
.
2005. ConSurf 2005: the projection of evolutionary conservation scores of residues on protein structures.. Nucleic Acids Res. 33(Web Server issue):W299-302.
.
2005. ConSurf 2005: the projection of evolutionary conservation scores of residues on protein structures.. Nucleic Acids Res. 33(Web Server issue):W299-302.
.
2005. DNA microarray analysis of nitrogen fixation and Fe(III) reduction in Geobacter sulfurreducens.. Appl Environ Microbiol. 71(5):2530-8.
.
2005. Extracellular electron transfer via microbial nanowires.. Nature. 435(7045):1098-101.
.
2005. Extracellular electron transfer via microbial nanowires.. Nature. 435(7045):1098-101.
.
2005. Function of phosphatidylinositol in mycobacteria.. J Biol Chem. 280(12):10981-7.
.
2005. Function of phosphatidylinositol in mycobacteria.. J Biol Chem. 280(12):10981-7.
.
2005. Outer membrane c-type cytochromes required for Fe(III) and Mn(IV) oxide reduction in Geobacter sulfurreducens.. Appl Environ Microbiol. 71(12):8634-41.
.
2005. PIG-V involved in transferring the second mannose in glycosylphosphatidylinositol.. J Biol Chem. 280(10):9489-97.
.
2005. PIG-V involved in transferring the second mannose in glycosylphosphatidylinositol.. J Biol Chem. 280(10):9489-97.
.
2005. PIG-V involved in transferring the second mannose in glycosylphosphatidylinositol.. J Biol Chem. 280(10):9489-97.
.
2005. Characterization of metabolism in the Fe(III)-reducing organism Geobacter sulfurreducens by constraint-based modeling.. Appl Environ Microbiol. 72(2):1558-68.
.
2006. Computational prediction of RpoS and RpoD regulatory sites in Geobacter sulfurreducens using sequence and gene expression information.. Gene. 384:73-95.
.
2006. DNA microarray and proteomic analyses of the RpoS regulon in Geobacter sulfurreducens.. J Bacteriol. 188(8):2792-800.
.
2006. Identification of a novel protein with a role in lipoarabinomannan biosynthesis in mycobacteria.. J Biol Chem. 281(14):9011-7.
.
2006. Identification of a novel protein with a role in lipoarabinomannan biosynthesis in mycobacteria.. J Biol Chem. 281(14):9011-7.
.
2006. Identification of a novel protein with a role in lipoarabinomannan biosynthesis in mycobacteria.. J Biol Chem. 281(14):9011-7.
.
2006.
Department of Microbiology