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Biology subjects

Inman, R.

Publications and source records attributed to Inman, R..

2 recordsLinked to original sources

Selective disruption of Traf1/cIAP2 interaction attenuates inflammatory responses and limits sepsis and rheumatoid arthritis

Tumor necrosis factor receptor-associated factor 1 (TRAF1) is an immune signaling adapter protein linked to increased susceptibility to rheumatoid arthritis (RA). TRAF1 has dual roles in regulating NF-{kappa}B and MAPK signaling: it promotes signaling through its association with cellular inhibitor of apoptosis 2 (cIAP2) downstream of certain tumor necrosis factor receptor (TNFR) family members but inhibits Toll-like receptor (TLR) signaling by limiting linear ubiquitination of key signaling proteins. Here, we identify a critical mutation in TRAF1 (V203A in humans, V196A in mice) that disrupts its interaction with cIAP2, leading to a significant reduction in TLR signaling and downstream inflammation in human and murine macrophages. We demonstrate that TRAF1 is recruited to the TLR4 complex and is indispensable for the recruitment of cIAP2, facilitating TAK1 phosphorylation and the activation of NF-{kappa}B and MAPK signaling pathways. Remarkably, mice harboring the TRAF1 V196A mutation are protected from LPS-induced septic shock and exhibit markedly reduced joint inflammation and disease severity in a collagen antibody-induced arthritis (CAIA) model of RA. These findings reveal a previously unrecognized and crucial role for the TRAF1/cIAP2 axis in promoting inflammation and offer a promising foundation for the development of novel therapeutic strategies for inflammatory conditions, such as sepsis and RA.

immunology↗

Live-cell imaging of pathogenic fungal hyphae reveal dynamic cellular responses to clinical antifungals

Antifungal susceptibility testing quantifies end-point fungal biomass in liquid cultures initiated from non-invasive yeast or spore morphologies. However, end-point analyses obscure informative spatio-temporal responses to drug exposures. In the major fungal pathogens Aspergillus fumigatus and Candida albicans we used microfluidic-coupled, fluorescence-mediated live-cell imaging to capture the real-time responses of fungal hyphae to clinical concentrations of AmBisome or Caspofungin. In both fungi, AmBisome exposure caused rapid growth arrest, extensive hyphal vacuolation and membrane blebbing. Responses to Caspofungin exposure were slower with initial lytic effects occurring after 1.5 or 4 hours in A.fumigatus and C.albicans, respectively. Whilst C.albicans hyphae undergo unsalvageable hyphal lysis in response to Caspofungin, A.fumigatus exhibit several compensatory growth behaviours, including a novel resuscitative growth form, that circumvent lytic events to maintain apical and sub-apical hyphal growth. This study reveals how the differing biologies of the two pathogens affected outcomes and contributes to the highly disparate rates of antifungal efficacy amongst commonly used drugs, where spore/yeast-derived inhibitory doses may underestimate the dose required to arrest/kill the invasive hyphal morphotypes of fungal pathogens in vitro.

cell biology↗