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23 results for author:"Metcalf W.W."Drop in Literature Citations

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Cloning, expression, and biochemical characterization of Streptomyces rubellomurinus genes required for biosynthesis of antimalarial compound FR900098.

Eliot A.C., Griffin B.M., Thomas P.M., Johannes T.W., Kelleher N.L., Zhao H., Metcalf W.W.

Chem. Biol. 15:765-770(2008) · UniProtKB (11)

Unusual transformations in the biosynthesis of the antibiotic phosphinothricin tripeptide.

Blodgett J.A., Thomas P.M., Li G., Velasquez J.E., van der Donk W.A., Kelleher N.L., Metcalf W.W.

Nat. Chem. Biol. 3:480-485(2007) · UniProtKB (31)

The Methanosarcina barkeri genome: comparative analysis with Methanosarcina acetivorans and Methanosarcina mazei reveals extensive rearrangement within methanosarcinal genomes.

Maeder D.L., Anderson I., Brettin T.S., Bruce D.C., Gilna P., Han C.S., Lapidus A., Metcalf W.W., Saunders E., Tapia R. et al.

J. Bacteriol. 188:7922-7931(2006) · UniProtKB (3,616)

Genetic, physiological and biochemical characterization of multiple methanol methyltransferase isozymes in Methanosarcina acetivorans C2A.

Pritchett M.A., Metcalf W.W.

Mol. Microbiol. 56:1183-1194(2005) · UniProtKB (10)

Genetic diversity and horizontal transfer of genes involved in oxidation of reduced phosphorus compounds by Alcaligenes faecalis WM2072.

Wilson M.M., Metcalf W.W.

Appl. Environ. Microbiol. 71:290-296(2005) · UniProtKB (8)

Molecular cloning, sequence analysis, and heterologous expression of the phosphinothricin tripeptide biosynthetic gene cluster from Streptomyces viridochromogenes DSM 40736.

Blodgett J.A., Zhang J.K., Metcalf W.W.

Antimicrob. Agents Chemother. 49:230-240(2005) · UniProtKB (30)

The htx and ptx operons of Pseudomonas stutzeri WM88 are new members of the pho regulon.

White A.K., Metcalf W.W.

J. Bacteriol. 186:5876-5882(2004) · UniProtKB (2)

Two C-P lyase operons in Pseudomonas stutzeri and their roles in the oxidation of phosphonates, phosphite, and hypophosphite.

White A.K., Metcalf W.W.

J. Bacteriol. 186:4730-4739(2004) · UniProtKB (24)

Genetic analysis of pigment biosynthesis in Xanthobacter autotrophicus Py2 using a new, highly efficient transposon mutagenesis system that is functional in a wide variety of bacteria.

Larsen R.A., Wilson M.M., Guss A.M., Metcalf W.W.

Arch. Microbiol. 178:193-201(2002) · UniProtKB (5)

The 2-aminoethylphosphonate-specific transaminase of the 2-aminoethylphosphonate degradation pathway.

Kim A.D., Baker A.S., Dunaway-Mariano D., Metcalf W.W., Wanner B.L., Martin B.M.

J. Bacteriol. 184:4134-4140(2002) · UniProtKB (1)

Biochemical, molecular, and genetic analyses of the acetone carboxylases from Xanthobacter autotrophicus strain Py2 and Rhodobacter capsulatus strain B10.

Sluis M.K., Larsen R.A., Krum J.G., Anderson R., Metcalf W.W., Ensign S.A.

J. Bacteriol. 184:2969-2977(2002) · UniProtKB (5)

The genome of Methanosarcina acetivorans reveals extensive metabolic and physiological diversity.

Galagan J.E., Nusbaum C., Roy A., Endrizzi M.G., Macdonald P., FitzHugh W., Calvo S., Engels R., Smirnov S., Atnoor D. et al.

Genome Res. 12:532-542(2002) · UniProtKB (4,467)

Directed mutagenesis and plasmid-based complementation in the methanogenic archaeon Methanosarcina acetivorans C2A demonstrated by genetic analysis of proline biosynthesis.

Zhang J.K., White A.K., Kuettner H.C., Boccazzi P., Metcalf W.W.

J. Bacteriol. 184:1449-1454(2002) · UniProtKB (3)

Purification and characterization of a novel phosphorus-oxidizing enzyme from Pseudomonas stutzeri WM88.

Costas A.M.G., White A.K., Metcalf W.W.

J. Biol. Chem. 276:17429-17436(2001) · UniProtKB (1)

Generation of dominant selectable markers for resistance to pseudomonic acid by cloning and mutagenesis of the ileS gene from the archaeon Methanosarcina barkeri fusaro.

Boccazzi P., Zhang J.K., Metcalf W.W.

J. Bacteriol. 182:2611-2618(2000) · UniProtKB (2)

Molecular genetic analysis of phosphite and hypophosphite oxidation by Pseudomonas stutzeri WM88.

Metcalf W.W., Wolfe R.S.

J. Bacteriol. 180:5547-5558(1998) · UniProtKB (23)

Insights into the mechanism of catalysis by the P-C bond-cleaving enzyme phosphonoacetaldehyde hydrolase derived from gene sequence analysis and mutagenesis.

Baker A.S., Ciocci M.J., Metcalf W.W., Kim J., Babbitt P.C., Wanner B.L., Martin B.M., Dunaway-Mariano D.

Biochemistry 37:9305-9315(1998) · UniProtKB (2)

A genetic system for Archaea of the genus Methanosarcina: liposome-mediated transformation and construction of shuttle vectors.

Metcalf W.W., Zhang J.K., Apolinario E., Sowers K.R., Wolfe R.S.

Proc. Natl. Acad. Sci. U.S.A. 94:2626-2631(1997) · UniProtKB (4)

Molecular, genetic, and biochemical characterization of the serC gene of Methanosarcina barkeri Fusaro.

Metcalf W.W., Zhang J.-K., Shi X., Wolfe R.S.

J. Bacteriol. 178:5797-5802(1996) · UniProtKB (2)

Mutational analysis of an Escherichia coli fourteen-gene operon for phosphonate degradation, using TnphoA' elements.

Metcalf W.W., Wanner B.L.

J. Bacteriol. 175:3430-3442(1993) · UniProtKB (1)

Molecular cloning, mapping, and regulation of Pho regulon genes for phosphonate breakdown by the phosphonatase pathway of Salmonella typhimurium LT2.

Jiang W., Metcalf W.W., Lee K.-S., Wanner B.L.

J. Bacteriol. 177:6411-6421(1995) · UniProtKB (7)

Identification of phosphate starvation-inducible genes in Escherichia coli K-12 by DNA sequence analysis of psi::lacZ(Mu d1) transcriptional fusions.

Metcalf W.W., Steed P.M., Wanner B.L.

J. Bacteriol. 172:3191-3200(1990) · UniProtKB (6)

Involvement of the Escherichia coli phn (psiD) gene cluster in assimilation of phosphorus in the form of phosphonates, phosphite, Pi esters, and Pi.

Metcalf W.W., Wanner B.L.

J. Bacteriol. 173:587-600(1991) · UniProtKB (1)

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