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Dartmouth Scholarship

Infectious Disease

2014

Oxidative stress

Articles 1 - 2 of 2

Full-Text Articles in Medicine and Health Sciences

Role Of Adaptor Trfa And Clppc In Controlling Levels Of Ssra-Tagged Proteins And Antitoxins In Staphylococcus Aureus, Niles P. Donegan, Jonathan S. Marvin, Ambrose L. Cheung Sep 2014

Role Of Adaptor Trfa And Clppc In Controlling Levels Of Ssra-Tagged Proteins And Antitoxins In Staphylococcus Aureus, Niles P. Donegan, Jonathan S. Marvin, Ambrose L. Cheung

Dartmouth Scholarship

Staphylococcus aureus responds to changing extracellular environments in part by adjusting its proteome through alterations of transcriptional priorities and selective degradation of the preexisting pool of proteins. In Bacillus subtilis, the proteolytic adaptor protein MecA has been shown to play a role in assisting with the proteolytic degradation of proteins involved in competence and the oxidative stress response. However, the targets of TrfA, the MecA homolog in S. aureus, have not been well characterized. In this work, we investigated how TrfA assists chaperones and proteases to regulate the proteolysis of several classes of proteins in S. aureus. …


Importance Of Bacillithiol In The Oxidative Stress Response Of Staphylococcus Aureus, Ana C. Posada, Stacey L. Kolar, Renata G. Dusi, Patrica Francois Jan 2014

Importance Of Bacillithiol In The Oxidative Stress Response Of Staphylococcus Aureus, Ana C. Posada, Stacey L. Kolar, Renata G. Dusi, Patrica Francois

Dartmouth Scholarship

In Staphylococcus aureus, the low-molecular-weight thiol called bacillithiol (BSH), together with cognate S-transferases, is believed to be the counterpart to the glutathione system of other organisms. To explore the physiological role of BSH in S. aureus, we constructed mutants with the deletion of bshA (sa1291), which encodes the glycosyltransferase that catalyzes the first step of BSH biosynthesis, and fosB (sa2124), which encodes a BSH-S-transferase that confers fosfomycin resistance, in several S. aureus strains, including clinical isolates. Mutation of fosB or bshA caused a 16- to 60-fold reduction in fosfomycin resistance in these S. aureus strains. High-pressure liquid chromatography analysis, which …