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To assess the contribution of type VI secretion systems to virulence and potential transcriptomic changes of E. amylovora CFBP 1430, a double mutant in two structural genes was generated (T6-d1d3). An in vitro RNA-seq transcriptome comparison of the wildtype to the T6-d1d3 mutant was made by growing...
ORGANISM(S): Erwinia amylovora 
The bacterial Type VI secretion system (T6SS) is important for bacterial competition as well as virulence in many Gram-negative bacteria, including human pathogens. T6SS is evolutionarily related to the contractile phage tails and assembles as a cell envelope attached organelle. The assembly progres...
ORGANISM(S): Vibrio sp. 57B112Y11 
2019-06-19 | PXD012832 | Pride
Comparative proteomics analysis of type VI secretion-dependent secretomes of Vibrio alginolyticus 12G01
ORGANISM(S): Vibrio Alginolyticus 12g01 
2014-11-21 | MSV000078946 | MassIVE
Many Gram-negative bacteria utilize the ubiquitous and versatile type VI secretion systems (T6SS) for diverse purposes, such as outcompeting other microbes or to successfully colonize hosts. T6SS of common pathogens are classified as T6SSi, but an outlier is the T6SSii and it is present only in the ...
ORGANISM(S): Francisella tularensis subsp. novicida (strain U112) 
2026-03-09 | PXD059583 | Pride
Type VI secretion systems (T6SSs) are nanomachineries used by bacteria to inject toxic effectors into neighbouring cells during interbacterial competition or infection. The existence of multiple paralogues of the structural proteins VgrG and PAAR and of specific accessory proteins allows the same T6...
ORGANISM(S): Serratia marcescens Bacteria 
2026-05-30 | PXD076681 | Pride
Helicobacter pylori conquered the world by colonizing the human stomach. There are two major groups of strains, one with and one without a cag pathogenicity island (cagPAI), which result in different clinical outcomes with increased severity in cagPAI+ H. pylori infections such as higher inflammatio...
ORGANISM(S): Mus musculus 
Bacteria have evolved effectors or toxins to outcompete other bacteria or to hijack host cell pathways. One broad family of bacterial polymorphic toxins regroups multidomain proteins with a modular organization, that comprise a C-terminal toxin domain fused to a N-terminal domain that adapt to the d...
ORGANISM(S): Escherichia coli Bacteria 
2021-11-30 | PXD028652 | Pride
Data from PeptideAtlas, [[http://www.peptideatlas.org/PASS/PASS00442 PASS00442]]. File: QEX1_C01215_R3.mzml. From PeptideAtlas: {{i}} Vibrio parahaemolyticus cells were grown in minimal media (M9 + 3% NaCl) with addition of 5 uM phenamil (to simulate growth on surface) for 5 hours in triplicates, an...
ORGANISM(S): Vibriophage_vp4_uid15449,vibriophage_vpv262_uid14316,vibrio_phage_fs1_uid14227,vibrio_phage_fs2_uid14088,vibrio_phage_k139_uid14144,vibrio_phage_kappa_uid28503,vibrio_phage_ksf_1phi_uid14562,vibrio_phage_kvp40_uid14416,vibrio_phage_n4_uid42785,vibrio_phage_vejphi_uid38367,vibrio_phage_vf12_uid14385,vibrio_phage_vf33_uid14384,vibrio_phage_vfo3k6_uid14093,vibrio_phage_vfo4k68_uid14094,vibrio_phage_vgjphi_uid14279,vibrio_phage_vhml_uid14234,vibrio_phage_vp2_uid14473,vibrio_phage_vp5_uid14382,vibrio_phage_vp882_uid18851,vibrio_phage_vp93_uid37885,vibrio_phage_vsk_uid14337, Vibrio_parahaemolyticus_rimd_2210633 
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