Staphylococcus aureuscan use an alternative pathway to be internalized by osteoblasts in absence of β1 integrins Article Swipe
YOU?
·
· 2023
· Open Access
·
· DOI: https://doi.org/10.1101/2023.12.13.571096
· OA: W4389656803
Staphylococcus aureus main internalization mechanism in osteoblasts relies on a tripartite interaction between bacterial fibronectin-binding proteins, extracellular matrix soluble fibronectin, and osteoblasts’ β1 integrins. Caveolins, and particularly caveolin-1, have shown to limit the plasma membrane microdomain mobility, and consequently reduce the uptake of S. aureus in keratinocytes. In this study, we aimed to deepen our understanding of the molecular mechanisms underlying S. aureus internalization in osteoblasts. Mechanistically, S. aureus internalization requires endosomal recycling β1 integrins as well as downstream effectors such as Src, Rac1, and PAK1. Surprisingly, in β1 integrin deficient osteoblasts, S. aureus internalization is restored when Caveolin-1 is absent and requires αvβ3/αvβ5 integrins as backup fibronectin receptors. Altogether, our data support that β1 integrins regulate the level of detergent-resistant membrane at the plasma membrane in a an endosomal and Caveolin-1 dependent manner. SUMMARY STATEMENT Staphylococcus aureus can be internalized by osteoblasts via a different mechanism than the main α5β1/fibronectin/fibronectin-binding protein that likely involves αvβ3 or αvβ5 integrin.