Matches in SemOpenAlex for { <https://semopenalex.org/work/W3017362003> ?p ?o ?g. }
- W3017362003 abstract "The obligatory intracellular pathogen Ehrlichia chaffeensis lacks most factors that could respond to oxidative stress (a host cell defense mechanism). We previously found that the C terminus of Ehrlichia surface invasin, entry-triggering protein of Ehrlichia (EtpE; EtpE-C) directly binds mammalian DNase X, a glycosylphosphatidylinositol-anchored cell surface receptor and that binding is required to induce bacterial entry and simultaneously to block the generation of reactive oxygen species (ROS) by host monocytes and macrophages. However, how the EtpE-C-DNase X complex mediates the ROS blockade was unknown. A mammalian transmembrane glycoprotein CD147 (basigin) binds to the EtpE-DNase X complex and is required for Ehrlichia entry and infection of host cells. Here, we found that bone marrow-derived macrophages (BMDM) from myeloid cell lineage-selective CD147-null mice had significantly reduced Ehrlichia-induced or EtpE-C-induced blockade of ROS generation in response to phorbol myristate acetate. In BMDM from CD147-null mice, nucleofection with CD147 partially restored the Ehrlichia-mediated inhibition of ROS generation. Indeed, CD147-null mice as well as their BMDM were resistant to Ehrlichia infection. Moreover, in human monocytes, anti-CD147 partially abrogated EtpE-C-induced blockade of ROS generation. Both Ehrlichia and EtpE-C could block activation of the small GTPase Rac1 (which in turn activates phagocyte NADPH oxidase) and suppress activation of Vav1, a hematopoietic-specific Rho/Rac guanine nucleotide exchange factor by phorbol myristate acetate. Vav1 suppression by Ehrlichia was CD147 dependent. E. chaffeensis is the first example of pathogens that block Rac1 activation to colonize macrophages. Furthermore, Ehrlichia uses EtpE to hijack the unique host DNase X-CD147-Vav1 signaling to block Rac1 activation.IMPORTANCEEhrlichia chaffeensis is an obligatory intracellular bacterium with the capability of causing an emerging infectious disease called human monocytic ehrlichiosis. E. chaffeensis preferentially infects monocytes and macrophages, professional phagocytes, equipped with an arsenal of antimicrobial mechanisms, including rapid reactive oxygen species (ROS) generation upon encountering bacteria. As Ehrlichia isolated from host cells are readily killed upon exposure to ROS, Ehrlichia must have evolved a unique mechanism to safely enter phagocytes. We discovered that binding of the Ehrlichia surface invasin to the host cell surface receptor not only triggers Ehrlichia entry but also blocks ROS generation by the host cells by mobilizing a novel intracellular signaling pathway. Knowledge of the mechanisms by which ROS production is inhibited may lead to the development of therapeutics for ehrlichiosis as well as other ROS-related pathologies." @default.
- W3017362003 created "2020-04-24" @default.
- W3017362003 creator A5003482762 @default.
- W3017362003 creator A5064005476 @default.
- W3017362003 date "2020-04-28" @default.
- W3017362003 modified "2023-09-24" @default.
- W3017362003 title "Ehrlichia chaffeensis Uses an Invasin To Suppress Reactive Oxygen Species Generation by Macrophages via CD147-Dependent Inhibition of Vav1 To Block Rac1 Activation" @default.
- W3017362003 cites W1484414906 @default.
- W3017362003 cites W1528970036 @default.
- W3017362003 cites W1558800866 @default.
- W3017362003 cites W1568955905 @default.
- W3017362003 cites W1729687247 @default.
- W3017362003 cites W1896483236 @default.
- W3017362003 cites W1910966691 @default.
- W3017362003 cites W1965202946 @default.
- W3017362003 cites W1972234127 @default.
- W3017362003 cites W1974487242 @default.
- W3017362003 cites W1977513191 @default.
- W3017362003 cites W1994159005 @default.
- W3017362003 cites W2008243630 @default.
- W3017362003 cites W2010630254 @default.
- W3017362003 cites W2012915496 @default.
- W3017362003 cites W2013484332 @default.
- W3017362003 cites W2013592169 @default.
- W3017362003 cites W2025960625 @default.
- W3017362003 cites W2039735909 @default.
- W3017362003 cites W2046966521 @default.
- W3017362003 cites W2048137960 @default.
- W3017362003 cites W2051687661 @default.
- W3017362003 cites W2061880687 @default.
- W3017362003 cites W2062773950 @default.
- W3017362003 cites W2084457694 @default.
- W3017362003 cites W2089265990 @default.
- W3017362003 cites W2094467956 @default.
- W3017362003 cites W2107655811 @default.
- W3017362003 cites W2111238561 @default.
- W3017362003 cites W2111506134 @default.
- W3017362003 cites W2111995639 @default.
- W3017362003 cites W2119212619 @default.
- W3017362003 cites W2119766298 @default.
- W3017362003 cites W2119854649 @default.
- W3017362003 cites W2120227455 @default.
- W3017362003 cites W2123076431 @default.
- W3017362003 cites W2123724558 @default.
- W3017362003 cites W2129672864 @default.
- W3017362003 cites W2131091712 @default.
- W3017362003 cites W2140720198 @default.
- W3017362003 cites W2147919935 @default.
- W3017362003 cites W2150618641 @default.
- W3017362003 cites W2150995459 @default.
- W3017362003 cites W2160438933 @default.
- W3017362003 cites W2161486471 @default.
- W3017362003 cites W2165083476 @default.
- W3017362003 cites W2167872299 @default.
- W3017362003 cites W2168635603 @default.
- W3017362003 cites W2176899848 @default.
- W3017362003 cites W2287825128 @default.
- W3017362003 cites W2370426177 @default.
- W3017362003 cites W2768981924 @default.
- W3017362003 cites W2789262944 @default.
- W3017362003 cites W77719516 @default.
- W3017362003 doi "https://doi.org/10.1128/mbio.00267-20" @default.
- W3017362003 hasPubMedCentralId "https://www.ncbi.nlm.nih.gov/pmc/articles/7175088" @default.
- W3017362003 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/32317318" @default.
- W3017362003 hasPublicationYear "2020" @default.
- W3017362003 type Work @default.
- W3017362003 sameAs 3017362003 @default.
- W3017362003 citedByCount "8" @default.
- W3017362003 countsByYear W30173620032020 @default.
- W3017362003 countsByYear W30173620032021 @default.
- W3017362003 countsByYear W30173620032022 @default.
- W3017362003 countsByYear W30173620032023 @default.
- W3017362003 crossrefType "journal-article" @default.
- W3017362003 hasAuthorship W3017362003A5003482762 @default.
- W3017362003 hasAuthorship W3017362003A5064005476 @default.
- W3017362003 hasBestOaLocation W30173620031 @default.
- W3017362003 hasConcept C153911025 @default.
- W3017362003 hasConcept C159047783 @default.
- W3017362003 hasConcept C185592680 @default.
- W3017362003 hasConcept C2779620486 @default.
- W3017362003 hasConcept C2779657035 @default.
- W3017362003 hasConcept C2909063110 @default.
- W3017362003 hasConcept C48349386 @default.
- W3017362003 hasConcept C86803240 @default.
- W3017362003 hasConcept C89423630 @default.
- W3017362003 hasConcept C95444343 @default.
- W3017362003 hasConceptScore W3017362003C153911025 @default.
- W3017362003 hasConceptScore W3017362003C159047783 @default.
- W3017362003 hasConceptScore W3017362003C185592680 @default.
- W3017362003 hasConceptScore W3017362003C2779620486 @default.
- W3017362003 hasConceptScore W3017362003C2779657035 @default.
- W3017362003 hasConceptScore W3017362003C2909063110 @default.
- W3017362003 hasConceptScore W3017362003C48349386 @default.
- W3017362003 hasConceptScore W3017362003C86803240 @default.
- W3017362003 hasConceptScore W3017362003C89423630 @default.
- W3017362003 hasConceptScore W3017362003C95444343 @default.
- W3017362003 hasFunder F4320337355 @default.
- W3017362003 hasIssue "2" @default.
- W3017362003 hasLocation W30173620031 @default.
- W3017362003 hasLocation W30173620032 @default.