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The social life of archaea is poorly understood. In particular, even though competition and conflict are common themes in microbial communities, there is scant evidence documenting antagonistic interactions between archaea and their abundant prokaryotic brethren: bacteria. Do archaea specifically ta...
ORGANISM(S): Haloferax volcanii SB1 
2026-02-07 | PXD064732 | Pride
Vancomycin-resistant Enterococcus faecium (VREfm) is a leading cause of healthcare-associated infections globally and demands new approaches for treatment. Here we show that genetic and pharmacological inactivation of a highly conserved NlpC/P60 peptidoglycan hydrolase, secreted antigen A (SagA), en...
ORGANISM(S): Enterococcus faecium ERV165 
2026-04-13 | PXD075040 | Pride
Cell growth and division require a balance between synthesis and hydrolysis of the peptidoglycan (PG). Inhibition of PG synthesis or uncontrolled PG hydrolysis can be lethal for the cells, making it imperative to control peptidoglycan hydrolase (PGH) activity. The activity of several enzymes involv...
ORGANISM(S): Peptoclostridium difficile (strain 630) (Clostridium difficile) 
2021-04-08 | PXD021541 | Pride
Identification of genomic changes in Staphylococcus aureus that confer resistance to peptidoglycan hydrolase antimicrobial enzymes
Identification of genomic changes in Staphylococcus aureus that confer resistance to peptidoglycan hydrolase antimicrobial enzymes
Identification of genomic changes in Staphylococcus aureus that confer resistance to peptidoglycan hydrolase antimicrobial enzymes
Identification of genomic changes in Staphylococcus aureus that confer resistance to peptidoglycan hydrolase antimicrobial enzymes
Identification of genomic changes in Staphylococcus aureus that confer resistance to peptidoglycan hydrolase antimicrobial enzymes
Identification of genomic changes in Staphylococcus aureus that confer resistance to peptidoglycan hydrolase antimicrobial enzymes
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