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Biochemistry, Biophysics, and Structural Biology Commons

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Microbiology

Hongwei Yu

Selected Works

Articles 1 - 2 of 2

Full-Text Articles in Biochemistry, Biophysics, and Structural Biology

Effect Of Intracellular Expression Of Antimicrobial Peptide Ll-37 On Growth Of Escherichia Coli Strain Top10 Under Aerobic And Anaerobic Conditions, Wei Liu, Shi Dong, Fei Xu, Xue Wang, T. Withers, Hongwei Yu, Xin Wang Dec 2014

Effect Of Intracellular Expression Of Antimicrobial Peptide Ll-37 On Growth Of Escherichia Coli Strain Top10 Under Aerobic And Anaerobic Conditions, Wei Liu, Shi Dong, Fei Xu, Xue Wang, T. Withers, Hongwei Yu, Xin Wang

Hongwei Yu

Antimicrobial peptides (AMPs) can cause lysis of target bacteria by directly inserting themselves into the lipid bilayer. This killing mechanism confounds the identification of the intracellular targets of AMPs. To circumvent this, we used a shuttle vector containing the inducible expression of a human cathelicidin-related AMP, LL-37, to examine its effect on Escherichia coli TOP10 under aerobic and anaerobic growth conditions. Induction of LL-37 caused growth inhibition and alteration in cell morphology to a filamentous phenotype. Further examination of the E. coli cell division protein FtsZ revealed that LL-37 did not interact with FtsZ. Moreover, intracellular expression of LL-37 results …


Evidence For Sigma Factor Competition In The Regulation Of Alginate Production By Pseudomonas Aeruginosa, Yeshi Yin, T. Ryan Withers, Xin Wang, Hongwei D. Yu Apr 2014

Evidence For Sigma Factor Competition In The Regulation Of Alginate Production By Pseudomonas Aeruginosa, Yeshi Yin, T. Ryan Withers, Xin Wang, Hongwei D. Yu

Hongwei Yu

Alginate overproduction, or mucoidy, plays an important role in the pathogenesis of P. aeruginosa lung infection in cystic fibrosis (CF). Mucoid strains with mucA mutations predominantly populate in chronically-infected patients. However, the mucoid strains can revert to nonmucoidy in vitro through suppressor mutations. We screened a mariner transposon library using CF149, a non-mucoid clinical isolate with a misssense mutation in algU(AlgUA61V). The wild type AlgU is a stress-related sigma factor that activates transcription of alginate biosynthesis. Three mucoid mutants were identified with transposon insertions that caused 1) an overexpression of AlgUA61V, 2) an overexpression of the stringent starvation protein A …