Publications by authors named "Anuja Pande"

The plant pathogen Pectobacterium atrosepticum encounters a stressful environment when it colonizes the plant apoplast. Chief among the stressors are the reactive oxygen species (ROS) that are produced by the host as a first line of defense. Bacterial transcription factors in turn use these signals as cues to upregulate expression of virulence-associated genes.

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Species within the genus exhibit remarkable phenotypic diversity. Genomic plasticity, including genome reduction and horizontal gene transfer, has been correlated with virulence traits in several species. However, the conservation of virulence genes in species otherwise considered to have limited potential for infection suggests that phenotypic diversity may not be explained solely on the basis of genetic diversity.

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Article Synopsis
  • * The bacterial protein OhrR regulates the response to these toxic hydroperoxides, promoting the production of the enzyme that converts them into less harmful alcohols, but its expression is complex, influenced by different oxidants.
  • * Finally, the study reveals that alterations in the levels of OhrR can affect bacterial survival and virulence, indicating that both OhrR and organic hydroperoxides are important factors in the pathogenicity of bacteria.
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Cationic ionic liquids-based surfactants (ILS), such as 4-methyl pyridinium bromide (CPBr, where n=4,6,8), were used in preparation of polyacrylamide gels, sample buffer, and running buffer for cationic ILS polyacrylamide gel electrophoresis (ILS-PAGE). These ILS are liquids in the pure state and were selected for improved separation of ribonuclease b (Rib b) glycoforms in a single step and a protein mixture containing bovine serum albumin (BSA, pI-4.8, 66.

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Article Synopsis
  • Fragment analysis is a method used to measure the sizes of DNA fragments by comparing them to known size standards through capillary electrophoresis.
  • This technique has been adapted for DNA footprinting, which requires precise measurements of both fragment length and intensity.
  • The text discusses important factors to optimize the fragment analysis process specifically for DNase I footprinting to accurately observe changes in DNase I cleavage patterns.
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