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Enhanced Type III Secretion System Expression of Atypical Shigella flexneri II:(3)4,7(8)
Sahyun Hong, Injun Cha, Nan-Ok Kim, Seong-Han Kim, Kyung-Tae Jung, Je-Hee Lee, Dong-Wook Kim, Mi-Sun Park, Yeon-Ho Kang
Osong Public Health Res Perspect. 2012;3(4):222-228.   Published online December 31, 2012
DOI: https://doi.org/10.1016/j.phrp.2012.10.002

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Enhanced Type III Secretion System Expression of Atypical Shigella flexneri II:(3)4,7(8)
Osong Public Health and Research Perspectives. 2012;3(4):222-228   Crossref logo
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A Substrate-Fusion Protein Is Trapped inside the Type III Secretion System Channel in Shigella flexneri
PLoS Pathogens. 2014;10(1):e1003881   Crossref logo
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Structural organization of the needle complex of the type III secretion apparatus of Shigella flexneri
Micron. 2007;38(3):291-301   Crossref logo
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Induction of type III secretion in Shigella flexneri is associated with differential control of transcription of genes encoding secreted proteins
The EMBO Journal. 1998;17(10):2894-2903   Crossref logo
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IcsA Is a Shigella flexneri Adhesin Regulated by the Type III Secretion System and Required for Pathogenesis
Cell Host & Microbe. 2014;15(4):435-445   Crossref logo
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A Repulsive Electrostatic Mechanism For Protein Translocation Through Type III Secretion System: Insights From Pulling Simulations Of MxiH Across The Needle Apparatus Of Shigella Flexneri
Biophysical Journal. 2009;96(3):78a   Crossref logo
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Novel fold of VirA, a type III secretion system effector protein from Shigella flexneri
Protein Science. 2008;17(12):2167-2173   Crossref logo
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A system for identifying post-invasion functions of invasion genes: requirements for the Mxi-Spa type III secretion pathway of Shigella flexneri in intercellular dissemination
Molecular Microbiology. 1999;34(4):675-689   Crossref logo
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Helical Structure of the Needle of the Type III Secretion System of Shigella flexneri
Journal of Biological Chemistry. 2003;278(19):17103-17107   Crossref logo
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Helical structure of the needle of the type III secretion system of Shigella flexneri.
Journal of Biological Chemistry. 2003;278(38):36980   Crossref logo
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