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Bello, C.

Publications and source records attributed to Bello, C..

2 recordsLinked to original sources

Role of astrogial Connexin 43 in pneumococcal meningitis and pneumolysin cytotoxicity

Introductory paragraphStreptococcus pneumoniae or pneumococcus (PN) is a major causative agent of bacterial meningitis with high mortality in young infants and elderly people. The mechanism underlying PN crossing of the blood brain barrier (BBB) remains poorly understood. Here, we show that the gap junctional component connexin 43 expressed in astrocytes (aCx43) plays a major role in PN meningitis. Following intravenous PN challenge, mice deficient for aCx43 developed milder symptoms and showed severely reduced bacterial counts in the brain. We show a role for aCx43 in the PN-induced fragmentation of astrocytic GFAP filaments associated with bacterial translocation across endothelial vessels and replication in the brain cortex. aCx43 triggers the PN- and Ply-dependent GFAP fragmentation and nuclear shrinkage in in vitro cultured astrocytes. We showed that purified pneumolysin (Ply) co-opted Cx43 to promote the permeabilization and cytosolic calcium (Ca2+) increase of host cells, a process sensitive to extracellular ATP depletion. These results point to aCx43 as a major player during bacterial meningitis and extend cytolytic mechanisms implicating other host cell plasma membrane channels proposed for small pore-forming toxins, to Ply, a cholesterol-dependent cytolysin, at concentrations relevant to bacterial infection.

microbiology

Vinculin targeting by Shigella IpaA promotes stable cell adhesion independent of mechanotransduction

The Shigella effector IpaA co-opts the focal adhesion protein vinculin to promote bacterial invasion. Here, we show that IpaA triggers an unreported mode of vinculin activation through the cooperative binding of its three vinculin-binding sites (VBSs) leading to vinculin oligomerization via its D1 and D2 head subdomains and highly stable adhesions resisting actin relaxing drugs. Using cross-linking mass spectrometry, we found that while IpaA VBSs1-2 bound to D1, IpaA VBS3 interacted with D2, a subdomain masked to other known VBSs. Structural modeling indicated that as opposed to canonical activation linked to interaction with D1, these combined VBSs interactions triggered major allosteric changes leading to D1D2 oligomerization. A cysteine-clamp preventing these changes and D1D2 oligomerization impaired growth of vinculin microclusters and cell adhesion. We propose that D1D2-mediated vinculin oligomerization occurs during the maturation of adhesion structures to enable the scaffolding of high-order vinculin complexes, and is triggered by Shigella IpaA to promote bacterial invasion in the absence of mechanotransduction. SummaryThe Shigella IpaA effector binds to cryptic vinculin sites leading to oligomerization via its head domain. This vinculin oligomerization mode appears required for the maturation and strengthening of cell adhesion but is co-opted by invasive bacteria independent of actomyosin contractility.

microbiology