4.7 Article

Murine Colitis is Mediated by Vimentin

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SCIENTIFIC REPORTS
卷 3, 期 -, 页码 -

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NATURE PUBLISHING GROUP
DOI: 10.1038/srep01045

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资金

  1. Arthritis Foundation
  2. Burroughs Welcome Fund
  3. Arthritis Foundation, NIH through the University of Michigan Tumor Immunology Training Program [T32CA88784-03]
  4. Rheumatic Disease Core Center of the University of Michigan [5 P30 AR048310-07]
  5. Post-Doctoral Translational Scholars Program [UL1RR024986]
  6. Gastrointestinal Peptide Research Center [5 P30 DK34933]
  7. NIH [DK64959, HL058897, K991R00, HL103777, DK087708-01]
  8. Merit Review funding
  9. Research Enhancement Award Program (REAP) grant from the Department of Veterans Affairs
  10. American Lung Association Senior Postdoctoral Research Fellowship
  11. Rackham Merit Fellowship
  12. Mechanisms of Microbial Pathogenesis Training Grant from the University of Michigan
  13. NIH Ruth L. Kirschstein NRSA Individual Predoctoral Fellowship [1F31CA150523-01]

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Vimentin, an abundant intermediate filament protein, presumably has an important role in stabilizing intracellular architecture, but its function is otherwise poorly understood. In a vimentin knockout (Vim KO) mouse model, we note that Vim KO mice challenged with intraperitoneal Escherichia coli control bacterial infection better than do wild-type (WT) mice. In vitro, Vim KO phagocytes show significantly increased capacity to mediate bacterial killing by abundant production of reactive oxygen species (ROS) and nitric oxides, likely due to interactions with the p47phox active subunit of NADPH oxidase. In acute colitis induced by dextran sodium sulfate (DSS), Vim KO mice develop significantly less gut inflammation than do WT mice. Further, Vim KO mice have markedly decreased bacterial extravasation in the setting of DSS-induced acute colitis, consistent with decreased intestinal disease. Our results suggest that vimentin impedes bacterial killing and production of ROS, thereby contributing to the pathogenesis of acute colitis.

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