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Items: 1 to 20 of 35

1.

The Salmonella effector protein SifA plays a dual role in virulence.

Zhao W, Moest T, Zhao Y, Guilhon AA, Buffat C, Gorvel JP, Méresse S.

Sci Rep. 2015 Aug 13;5:12979. doi: 10.1038/srep12979.

2.

Reconstruction of the temporal signaling network in Salmonella-infected human cells.

Budak G, Eren Ozsoy O, Aydin Son Y, Can T, Tuncbag N.

Front Microbiol. 2015 Jul 20;6:730. doi: 10.3389/fmicb.2015.00730. eCollection 2015.

3.

Identification of vacuoles containing extraintestinal differentiated forms of Legionella pneumophila in colonized Caenorhabditis elegans soil nematodes.

Hellinga JR, Garduño RA, Kormish JD, Tanner JR, Khan D, Buchko K, Jimenez C, Pinette MM, Brassinga AK.

Microbiologyopen. 2015 Aug;4(4):660-81. doi: 10.1002/mbo3.271. Epub 2015 Jul 1.

4.

Salmonella Engages Host MicroRNAs To Modulate SUMOylation: a New Arsenal for Intracellular Survival.

Verma S, Mohapatra G, Ahmad SM, Rana S, Jain S, Khalsa JK, Srikanth CV.

Mol Cell Biol. 2015 Sep 1;35(17):2932-46. doi: 10.1128/MCB.00397-15. Epub 2015 Jun 22.

5.

Protective effects of curcumin against human immunodeficiency virus 1 gp120 V3 loop-induced neuronal injury in rats.

Gong Z, Yang L, Tang H, Pan R, Xie S, Guo L, Wang J, Deng Q, Xiong G, Xing Y, Dong J.

Neural Regen Res. 2012 Jan 25;7(3):171-5. doi: 10.3969/j.issn.1673-5374.2012.03.002.

6.

γδ Intraepithelial Lymphocyte Migration Limits Transepithelial Pathogen Invasion and Systemic Disease in Mice.

Edelblum KL, Singh G, Odenwald MA, Lingaraju A, El Bissati K, McLeod R, Sperling AI, Turner JR.

Gastroenterology. 2015 Jun;148(7):1417-26. doi: 10.1053/j.gastro.2015.02.053. Epub 2015 Mar 4.

7.

PERP, a host tetraspanning membrane protein, is required for Salmonella-induced inflammation.

Hallstrom KN, Srikanth CV, Agbor TA, Dumont CM, Peters KN, Paraoan L, Casanova JE, Boll EJ, McCormick BA.

Cell Microbiol. 2015 Jun;17(6):843-59. doi: 10.1111/cmi.12406. Epub 2015 Jan 24.

8.

Bacterial secreted effectors and caspase-3 interactions.

Wall DM, McCormick BA.

Cell Microbiol. 2014 Dec;16(12):1746-56. doi: 10.1111/cmi.12368. Epub 2014 Oct 30. Review.

9.

Mucosal Inflammatory Response to Salmonella typhimurium Infection.

Patel S, McCormick BA.

Front Immunol. 2014 Jul 4;5:311. doi: 10.3389/fimmu.2014.00311. eCollection 2014. Review.

10.

Coinfection with an intestinal helminth impairs host innate immunity against Salmonella enterica serovar Typhimurium and exacerbates intestinal inflammation in mice.

Su L, Su CW, Qi Y, Yang G, Zhang M, Cherayil BJ, Zhang X, Shi HN.

Infect Immun. 2014 Sep;82(9):3855-66. doi: 10.1128/IAI.02023-14. Epub 2014 Jun 30.

11.

Activation of focal adhesion kinase by Salmonella suppresses autophagy via an Akt/mTOR signaling pathway and promotes bacterial survival in macrophages.

Owen KA, Meyer CB, Bouton AH, Casanova JE.

PLoS Pathog. 2014 Jun 5;10(6):e1004159. doi: 10.1371/journal.ppat.1004159. eCollection 2014 Jun.

12.

Genomic characterization of Salmonella Cerro ST367, an emerging Salmonella subtype in cattle in the United States.

Rodriguez-Rivera LD, Moreno Switt AI, Degoricija L, Fang R, Cummings CA, Furtado MR, Wiedmann M, den Bakker HC.

BMC Genomics. 2014 Jun 4;15:427. doi: 10.1186/1471-2164-15-427.

13.

Salmonella enterica serovar Typhimurium immunotherapy for B-cell lymphoma induces broad anti-tumour immunity with therapeutic effect.

Grille S, Moreno M, Bascuas T, Marqués JM, Muñoz N, Lens D, Chabalgoity JA.

Immunology. 2014 Nov;143(3):428-37. doi: 10.1111/imm.12320.

14.

A sequence-based approach for prediction of CsrA/RsmA targets in bacteria with experimental validation in Pseudomonas aeruginosa.

Kulkarni PR, Jia T, Kuehne SA, Kerkering TM, Morris ER, Searle MS, Heeb S, Rao J, Kulkarni RV.

Nucleic Acids Res. 2014 Jun;42(11):6811-25. doi: 10.1093/nar/gku309. Epub 2014 Apr 29.

15.

The ability of an attaching and effacing pathogen to trigger localized actin assembly contributes to virulence by promoting mucosal attachment.

Mallick EM, Garber JJ, Vanguri VK, Balasubramanian S, Blood T, Clark S, Vingadassalom D, Louissaint C, McCormick B, Snapper SB, Leong JM.

Cell Microbiol. 2014 Sep;16(9):1405-24. doi: 10.1111/cmi.12302. Epub 2014 Jun 2.

16.

The oxido-reductase enzyme glutathione peroxidase 4 (GPX4) governs Salmonella Typhimurium-induced neutrophil transepithelial migration.

Agbor TA, Demma Z, Mrsny RJ, Castillo A, Boll EJ, McCormick BA.

Cell Microbiol. 2014 Sep;16(9):1339-53. doi: 10.1111/cmi.12290. Epub 2014 May 5.

17.

Potential of known and short prokaryotic protein motifs as a basis for novel peptide-based antibacterial therapeutics: a computational survey.

Ruhanen H, Hurley D, Ghosh A, O'Brien KT, Johnston CR, Shields DC.

Front Microbiol. 2014 Jan 21;5:4. doi: 10.3389/fmicb.2014.00004. eCollection 2014.

18.

Structure of an SspH1-PKN1 complex reveals the basis for host substrate recognition and mechanism of activation for a bacterial E3 ubiquitin ligase.

Keszei AF, Tang X, McCormick C, Zeqiraj E, Rohde JR, Tyers M, Sicheri F.

Mol Cell Biol. 2014 Feb;34(3):362-73. doi: 10.1128/MCB.01360-13. Epub 2013 Nov 18.

19.
20.

The inside story of Shigella invasion of intestinal epithelial cells.

Carayol N, Tran Van Nhieu G.

Cold Spring Harb Perspect Med. 2013 Oct 1;3(10):a016717. doi: 10.1101/cshperspect.a016717. Review.

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