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There are 6554 results for: content related to: Self-Renewal of Leukemia Stem Cells in Friend Virus-Induced Erythroleukemia Requires Proviral Insertional Activation of Spi1 and Hedgehog Signaling but Not Mutation of p53

  1. You have free access to this content
    Association of a functional polymorphism in the 3′-untranslated region of SPI1 with systemic lupus erythematosus

    Arthritis & Rheumatism

    Volume 63, Issue 3, March 2011, Pages: 755–763, Koki Hikami, Aya Kawasaki, Ikue Ito, Minori Koga, Satoshi Ito, Taichi Hayashi, Isao Matsumoto, Akito Tsutsumi, Makio Kusaoi, Yoshinari Takasaki, Hiroshi Hashimoto, Tadao Arinami, Takayuki Sumida and Naoyuki Tsuchiya

    Article first published online : 25 FEB 2011, DOI: 10.1002/art.30188

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    The Mechanism of Salmonella Entry Determines the Vacuolar Environment and Intracellular Gene Expression

    Traffic

    Volume 7, Issue 1, January 2006, Pages: 39–51, Dan Drecktrah, Leigh A. Knodler, Robin Ireland and Olivia Steele-Mortimer

    Article first published online : 16 NOV 2005, DOI: 10.1111/j.1600-0854.2005.00360.x

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    Salmonella pathogenicity island 2-dependent macrophage death is mediated in part by the host cysteine protease caspase-1

    Cellular Microbiology

    Volume 3, Issue 12, December 2001, Pages: 825–837, Denise M. Monack, Corrella S. Detweiler and Stanley Falkow

    Article first published online : 20 DEC 2001, DOI: 10.1046/j.1462-5822.2001.00162.x

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    HilD, HilC and RtsA constitute a feed forward loop that controls expression of the SPI1 type three secretion system regulator hilA in Salmonella enterica serovar Typhimurium

    Molecular Microbiology

    Volume 57, Issue 3, August 2005, Pages: 691–705, Craig D. Ellermeier, Jeremy R. Ellermeier and James M. Slauch

    Article first published online : 30 JUN 2005, DOI: 10.1111/j.1365-2958.2005.04737.x

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    Derepression of Salmonella pathogenicity island 1 genes within macrophages leads to rapid apoptosis via caspase-1- and caspase-3-dependent pathways

    Cellular Microbiology

    Volume 7, Issue 1, January 2005, Pages: 79–90, Akiko Takaya, Akiko Suzuki, Yuji Kikuchi, Masahiro Eguchi, Emiko Isogai, Toshifumi Tomoyasu and Tomoko Yamamoto

    Article first published online : 4 AUG 2004, DOI: 10.1111/j.1462-5822.2004.00435.x

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    Schizosaccharomyces pombe Snf2SR, a novel SNF2 family protein, interacts with Ran GTPase and modulates both RanGEF and RanGAP activities

    Genes to Cells

    Volume 13, Issue 6, June 2008, Pages: 571–582, Tomoyuki Ohba, Hitoshi Nishijima, Hideo Nishitani and Takeharu Nishimoto

    Article first published online : 17 APR 2008, DOI: 10.1111/j.1365-2443.2008.01190.x

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    Two AraC/XylS family members can independently counteract the effect of repressing sequences upstream of the hilA promoter

    Molecular Microbiology

    Volume 32, Issue 3, May 1999, Pages: 629–642, Lisa M. Schechter, Scott M. Damrauer and Catherine A. Lee

    Article first published online : 1 MAR 2002, DOI: 10.1046/j.1365-2958.1999.01381.x

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    Degradation of the HilC and HilD regulator proteins by ATP-dependent Lon protease leads to downregulation of Salmonella pathogenicity island 1 gene expression

    Molecular Microbiology

    Volume 55, Issue 3, February 2005, Pages: 839–852, Akiko Takaya, Yohsuke Kubota, Emiko Isogai and Tomoko Yamamoto

    Article first published online : 2 DEC 2004, DOI: 10.1111/j.1365-2958.2004.04425.x

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    AraC/XylS family members, HilD and HilC, directly activate virulence gene expression independently of HilA in Salmonella typhimurium

    Molecular Microbiology

    Volume 47, Issue 3, February 2003, Pages: 715–728, Samina Akbar, Lisa M. Schechter, C. Phoebe Lostroh and Catherine A. Lee

    Article first published online : 15 JAN 2003, DOI: 10.1046/j.1365-2958.2003.03322.x

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    Ubiquitin ligase Rsp5p is involved in the gene expression changes during nutrient limitation in Saccharomyces cerevisiae

    Yeast

    Volume 26, Issue 1, January 2009, Pages: 1–15, F. Cardona, A. Aranda and M. del Olmo

    Article first published online : 29 JAN 2009, DOI: 10.1002/yea.1645

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    The intestinal fatty acid propionate inhibits Salmonella invasion through the post-translational control of HilD

    Molecular Microbiology

    Volume 87, Issue 5, March 2013, Pages: 1045–1060, Chien-Che Hung, Cherilyn D. Garner, James M. Slauch, Zachary W. Dwyer, Sara D. Lawhon, Jonathan G. Frye, Michael McClelland, Brian M. M. Ahmer and Craig Altier

    Article first published online : 28 JAN 2013, DOI: 10.1111/mmi.12149

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    Chemical synthesis and characterization of Pi1, a scorpion toxin from Pandinus imperator active on K+ channels

    European Journal of Biochemistry

    Volume 267, Issue 16, August 2000, Pages: 5149–5155, Ziad Fajloun, Edmond Carlier, Catherine Lecomte, Sandrine Geib, Eric di Luccio, Delphine Bichet, Kamel Mabrouk, Hervé Rochat, Michel De Waard and Jean-Marc Sabatier

    Article first published online : 25 DEC 2001, DOI: 10.1046/j.1432-1327.2000.01577.x

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    The Salmonella SPI1 effector SopB stimulates nitric oxide production long after invasion

    Cellular Microbiology

    Volume 7, Issue 1, January 2005, Pages: 105–113, Dan Drecktrah, Leigh A. Knodler, Kendal Galbraith and Olivia Steele-Mortimer

    Article first published online : 4 AUG 2004, DOI: 10.1111/j.1462-5822.2004.00436.x

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    Cooperation of Salmonella pathogenicity islands 1 and 4 is required to breach epithelial barriers

    Cellular Microbiology

    Volume 10, Issue 11, November 2008, Pages: 2364–2376, Roman G. Gerlach, Nuno Cláudio, Manfred Rohde, Daniela Jäckel, Carolin Wagner and Michael Hensel

    Article first published online : 30 JUL 2008, DOI: 10.1111/j.1462-5822.2008.01218.x

  15. You have full text access to this OnlineOpen article
    The RNA chaperone Hfq is essential for the virulence of Salmonella typhimurium

    Molecular Microbiology

    Volume 63, Issue 1, January 2007, Pages: 193–217, Alexandra Sittka, Verena Pfeiffer, Karsten Tedin and Jörg Vogel

    Article first published online : 24 OCT 2006, DOI: 10.1111/j.1365-2958.2006.05489.x

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    Salmonella typhimurium leucine-rich repeat proteins are targeted to the SPI1 and SPI2 type III secretion systems

    Molecular Microbiology

    Volume 34, Issue 4, November 1999, Pages: 850–864, Edward A. Miao, Christina A. Scherer, Renée M. Tsolis, Robert A. Kingsley, L. Garry Adams, Andreas J. Bäumler and Samuel I. Miller

    Article first published online : 1 MAR 2002, DOI: 10.1046/j.1365-2958.1999.01651.x

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    Salmonella SirA is a global regulator of genes mediating enteropathogenesis

    Molecular Microbiology

    Volume 31, Issue 3, February 1999, Pages: 971–982, Brian M. M. Ahmer, Jeroen Van Reeuwijk, Patricia R. Watson, Tim S. Wallis and Fred Heffron

    Article first published online : 1 MAR 2002, DOI: 10.1046/j.1365-2958.1999.01244.x

  18. You have full text access to this OnlineOpen article
    During infection of epithelial cells Salmonella enterica serovar Typhimurium undergoes a time-dependent transcriptional adaptation that results in simultaneous expression of three type 3 secretion systems

    Cellular Microbiology

    Volume 10, Issue 4, April 2008, Pages: 958–984, I. Hautefort, A. Thompson, S. Eriksson-Ygberg, M. L. Parker, S. Lucchini, V. Danino, R. J. M. Bongaerts, N. Ahmad, M. Rhen and J. C. D. Hinton

    Article first published online : 20 NOV 2007, DOI: 10.1111/j.1462-5822.2007.01099.x

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    NUP98-HOXA9-transgenic zebrafish develop a myeloproliferative neoplasm and provide new insight into mechanisms of myeloid leukaemogenesis

    British Journal of Haematology

    Volume 155, Issue 2, October 2011, Pages: 167–181, A. Michael Forrester, Clemens Grabher, Eileen R. McBride, Ellen R. Boyd, Märta H. Vigerstad, Alexander Edgar, Fui-Boon Kai, Sahar I. Da’as, Elspeth Payne, A. Thomas Look and Jason N. Berman

    Article first published online : 2 AUG 2011, DOI: 10.1111/j.1365-2141.2011.08810.x

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    Taking Possession: Biogenesis of the Salmonella-Containing Vacuole

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    Volume 4, Issue 9, September 2003, Pages: 587–599, Leigh A. Knodler and Olivia Steele-Mortimer

    Article first published online : 12 AUG 2003, DOI: 10.1034/j.1600-0854.2003.00118.x