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Escherichia coli

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Articles 31 - 36 of 36

Full-Text Articles in Biochemistry

Host Blood Proteins And Peptides In The Midgut Of The Tick Dermacentor Variabilis Contribute To Bacterial Control, Daniel E. Sonenshine, Wayne L. Hynes, Shane M. Ceraul, Robert Mitchell, Tiffany Benzine Jan 2005

Host Blood Proteins And Peptides In The Midgut Of The Tick Dermacentor Variabilis Contribute To Bacterial Control, Daniel E. Sonenshine, Wayne L. Hynes, Shane M. Ceraul, Robert Mitchell, Tiffany Benzine

Biological Sciences Faculty Publications

Antimicrobial midgut proteins and peptides that result from blood digestion in feeding American dog ticks Dermacentor variabilis (Say) were identified. Midgut extracts from these ticks showed antimicrobial activity against Micrococcus luteus, regardless of whether they were challenged with peptidoglycan, blood meal components, rabbit blood, Bacillus subtilis, Escherischia coli or Borrelia burgdorferi. However, no peptide band co-migrating with defensin was found in midgut extracts from the challenged ticks. Partial purification of the midgut extracts using C18 Sep Paks and gel electrophoresis showed the presence of 4 distinct bands with rMW 4.1, 5.3, 5.7 and 8.0 kDa identified …


Pcr And 16s Rdna Sequencing For Identifying And Comparing Gram-Negative Bacteria, Molly Truax May 2004

Pcr And 16s Rdna Sequencing For Identifying And Comparing Gram-Negative Bacteria, Molly Truax

Honors Capstones

Capstone submitted as a graduation requirement for the BSU Honors Program.


Disulfide Bond Formation Involves A Quinhydrone-Type Charge–Transfer Complex, James Regeimbal, Stefan Gleiter, Bernard L. Trumpower, Chang-Ang Yu Nov 2003

Disulfide Bond Formation Involves A Quinhydrone-Type Charge–Transfer Complex, James Regeimbal, Stefan Gleiter, Bernard L. Trumpower, Chang-Ang Yu

Dartmouth Scholarship

The chemistry of disulfide exchange in biological systems is well studied. However, the detailed mechanism of how oxidizing equivalents are derived to form disulfide bonds in proteins is not clear. In prokaryotic organisms, it is known that DsbB delivers oxidizing equivalents through DsbA to secreted proteins. DsbB becomes reoxidized by reducing quinones that are part of the membrane-bound electron-transfer chains. It is this quinone reductase activity that links disulfide bond formation to the electron transport system. We show here that purified DsbB contains the spectral signal of a quinhydrone, a charge-transfer complex consisting of a hydroquinone and a quinone in …


Construction Of Rhas And Rhar Overexpression Plasmids And The Effects Of Crp Mutants On E.Coli L-Rhamnose Gene Expression, Amber Bromenshenkel, Susan Egan May 2002

Construction Of Rhas And Rhar Overexpression Plasmids And The Effects Of Crp Mutants On E.Coli L-Rhamnose Gene Expression, Amber Bromenshenkel, Susan Egan

Honors Capstones

Capstone submitted as a graduation requirement for the BSU Honors Program.


Cloning Of Human Acetyl-Coa Carboxylase-Beta And Its Unique Features., Joohun Ha, Jung-Kee Lee, Kyung-Sup Kim, Lee A. Witters, Ki-Han Kim Oct 1996

Cloning Of Human Acetyl-Coa Carboxylase-Beta And Its Unique Features., Joohun Ha, Jung-Kee Lee, Kyung-Sup Kim, Lee A. Witters, Ki-Han Kim

Dartmouth Scholarship

Acetyl-CoA carboxylase, which has a molecular mass of 265 kDa (ACC-alpha), catalyzes the rate-limiting step in the biosynthesis of long-chain fatty acids. In this study we report the complete amino acid sequence and unique features of an isoform of ACC with a molecular mass of 275 kDa (ACC-beta), which is primarily expressed in heart and skeletal muscles. In these tissues, ACC-beta may be involved in the regulation of fatty acid oxidation, rather than fatty acid biosynthesis. ACC-beta contains an amino acid sequence at the N terminus which is about 200 amino acids long and may be uniquely related to the …


A Novel Iron-Regulated Metal Transporter From Plants Identified By Functional Expression In Yeast., David Eide, Margaret Broderius, Jeanette Fett, Mary Lou Guerinot May 1996

A Novel Iron-Regulated Metal Transporter From Plants Identified By Functional Expression In Yeast., David Eide, Margaret Broderius, Jeanette Fett, Mary Lou Guerinot

Dartmouth Scholarship

Iron is an essential nutrient for virtually all organisms. The IRT1 (iron-regulated transporter) gene of the plant Arabidopsis thaliana, encoding a probable Fe(II) transporter, was cloned by functional expression in a yeast strain defective for iron uptake. Yeast expressing IRT1 possess a novel Fe(II) uptake activity that is strongly inhibited by Cd. IRT1 is predicted to be an integral membrane protein with a metal-binding domain. Data base comparisons and Southern blot analysis indicated that IRT1 is a member of a gene family in Arabidopsis. Related sequences were also found in the genomes of rice, yeast, nematodes, and humans. In Arabidopsis, …