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Items: 1 to 20 of 109

1.

K+ efflux is required for histone H3 dephosphorylation by Listeria monocytogenes listeriolysin O and other pore-forming toxins.

Hamon MA, Cossart P.

Infect Immun. 2011 Jul;79(7):2839-46. doi: 10.1128/IAI.01243-10. Epub 2011 Apr 11.

2.

The pore-forming toxin listeriolysin O mediates a novel entry pathway of L. monocytogenes into human hepatocytes.

Vadia S, Arnett E, Haghighat AC, Wilson-Kubalek EM, Tweten RK, Seveau S.

PLoS Pathog. 2011 Nov;7(11):e1002356. doi: 10.1371/journal.ppat.1002356. Epub 2011 Nov 3.

3.

Fluxes of Ca2+ and K+ are required for the listeriolysin O-dependent internalization pathway of Listeria monocytogenes.

Vadia S, Seveau S.

Infect Immun. 2014 Mar;82(3):1084-91. doi: 10.1128/IAI.01067-13. Epub 2013 Dec 23.

4.

Listeria monocytogenes impairs SUMOylation for efficient infection.

Ribet D, Hamon M, Gouin E, Nahori MA, Impens F, Neyret-Kahn H, Gevaert K, Vandekerckhove J, Dejean A, Cossart P.

Nature. 2010 Apr 22;464(7292):1192-5. doi: 10.1038/nature08963.

5.

Role for telomerase in Listeria monocytogenes infection.

Samba-Louaka A, Stavru F, Cossart P.

Infect Immun. 2012 Dec;80(12):4257-63. doi: 10.1128/IAI.00614-12. Epub 2012 Sep 24.

6.

Listeriolysin O secreted by Listeria monocytogenes into the host cell cytosol is degraded by the N-end rule pathway.

Schnupf P, Zhou J, Varshavsky A, Portnoy DA.

Infect Immun. 2007 Nov;75(11):5135-47. Epub 2007 Aug 6.

7.

Multifaceted activity of listeriolysin O, the cholesterol-dependent cytolysin of Listeria monocytogenes.

Seveau S.

Subcell Biochem. 2014;80:161-95. doi: 10.1007/978-94-017-8881-6_9. Review.

8.
9.

Membrane damage during Listeria monocytogenes infection triggers a caspase-7 dependent cytoprotective response.

Cassidy SK, Hagar JA, Kanneganti TD, Franchi L, Nuñez G, O'Riordan MX.

PLoS Pathog. 2012;8(7):e1002628. doi: 10.1371/journal.ppat.1002628. Epub 2012 Jul 12.

10.

Listeriolysin O suppresses phospholipase C-mediated activation of the microbicidal NADPH oxidase to promote Listeria monocytogenes infection.

Lam GY, Fattouh R, Muise AM, Grinstein S, Higgins DE, Brumell JH.

Cell Host Microbe. 2011 Dec 15;10(6):627-34. doi: 10.1016/j.chom.2011.11.005.

11.
12.

Listeriolysin O-dependent bacterial entry into the cytoplasm is required for calpain activation and interleukin-1 alpha secretion in macrophages infected with Listeria monocytogenes.

Dewamitta SR, Nomura T, Kawamura I, Hara H, Tsuchiya K, Kurenuma T, Shen Y, Daim S, Yamamoto T, Qu H, Sakai S, Xu Y, Mitsuyama M.

Infect Immun. 2010 May;78(5):1884-94. doi: 10.1128/IAI.01143-09. Epub 2010 Mar 1.

13.
14.

pH dependence of listeriolysin O aggregation and pore-forming ability.

Bavdek A, Kostanjšek R, Antonini V, Lakey JH, Dalla Serra M, Gilbert RJ, Anderluh G.

FEBS J. 2012 Jan;279(1):126-41. doi: 10.1111/j.1742-4658.2011.08405.x. Epub 2011 Nov 25.

15.
16.

Listeriolysin O secreted by Listeria monocytogenes induces NF-kappaB signalling by activating the IkappaB kinase complex.

Kayal S, Lilienbaum A, Join-Lambert O, Li X, Israël A, Berche P.

Mol Microbiol. 2002 Jun;44(5):1407-19.

17.

Listeriolysin O allows Listeria monocytogenes replication in macrophage vacuoles.

Birmingham CL, Canadien V, Kaniuk NA, Steinberg BE, Higgins DE, Brumell JH.

Nature. 2008 Jan 17;451(7176):350-4. doi: 10.1038/nature06479.

PMID:
18202661
18.

Sterol and pH interdependence in the binding, oligomerization, and pore formation of Listeriolysin O.

Bavdek A, Gekara NO, Priselac D, Gutiérrez Aguirre I, Darji A, Chakraborty T, Macek P, Lakey JH, Weiss S, Anderluh G.

Biochemistry. 2007 Apr 10;46(14):4425-37. Epub 2007 Mar 15.

PMID:
17358050
19.

Fisetin inhibits Listeria monocytogenes virulence by interfering with the oligomerization of listeriolysin O.

Wang J, Qiu J, Tan W, Zhang Y, Wang H, Zhou X, Liu S, Feng H, Li W, Niu X, Deng X.

J Infect Dis. 2015 May 1;211(9):1376-87. doi: 10.1093/infdis/jiu520. Epub 2014 Sep 17.

20.

The pore-forming toxin listeriolysin O is degraded by neutrophil metalloproteinase-8 and fails to mediate Listeria monocytogenes intracellular survival in neutrophils.

Arnett E, Vadia S, Nackerman CC, Oghumu S, Satoskar AR, McLeish KR, Uriarte SM, Seveau S.

J Immunol. 2014 Jan 1;192(1):234-44. doi: 10.4049/jimmunol.1301302. Epub 2013 Dec 6.

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