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ab12251 被引用在 18 文献中.

  • Sutherland GA  et al. Probing the quality control mechanism of the Escherichia coli twin-arginine translocase with folding variants of a de novo-designed heme protein. J Biol Chem 293:6672-6681 (2018). WB . PubMed: 29559557
  • Liu Y  et al. Transcriptomic dissection of the horizontally acquired response regulator EsrB reveals its global regulatory roles in the physiological adaptation and activation of T3SS and the cognate effector repertoire in Edwardsiella piscicida during infection toward turbot. Virulence 8:1355-1377 (2017). PubMed: 28441105
  • Tooke FJ  et al. A unifying mechanism for the biogenesis of membrane proteins co-operatively integrated by the Sec and Tat pathways. Elife 6:N/A (2017). PubMed: 28513434
  • Tarasenko D  et al. The MICOS component Mic60 displays a conserved membrane-bending activity that is necessary for normal cristae morphology. J Cell Biol 216:889-899 (2017). WB ; Escherichia coli . PubMed: 28254827
  • Pinaud L  et al. Identification of novel substrates of Shigella T3SA through analysis of its virulence plasmid-encoded secretome. PLoS One 12:e0186920 (2017). PubMed: 29073283
  • Pinaud L  et al. Injection of T3SS effectors not resulting in invasion is the main targeting mechanism ofShigellatoward human lymphocytes. Proc Natl Acad Sci U S A 114:9954-9959 (2017). PubMed: 28847968
  • Ho AK  et al. The topology, structure and PE interaction of LITAF underpin a Charcot-Marie-Tooth disease type 1C. BMC Biol 14:109 (2016). PubMed: 27927196
  • Lamason RL  et al. Rickettsia Sca4 Reduces Vinculin-Mediated Intercellular Tension to Promote Spread. Cell 167:670-683.e10 (2016). PubMed: 27768890
  • Rohde A  et al. Rapid screening for antibiotic resistance elements on the RNA transcript, protein and enzymatic activity level. Ann Clin Microbiol Antimicrob 15:55 (2016). ICC/IF ; Escherichia coli . PubMed: 27663856
  • Drobnak I  et al. Multiple driving forces required for efficient secretion of autotransporter virulence proteins. J Biol Chem 290:10104-16 (2015). PubMed: 25670852
  • Fantappiè L  et al. Antibody-mediated immunity induced by engineered Escherichia coli OMVs carrying heterologous antigens in their lumen. J Extracell Vesicles 3:N/A (2014). WB . PubMed: 25147647
  • Heggeset TM  et al. Combinatorial mutagenesis and selection of improved signal sequences and their application for high-level production of translocated heterologous proteins in Escherichia coli. Appl Environ Microbiol 79:559-68 (2013). WB . PubMed: 23144128
  • Bröms JE  et al. Unique substrates secreted by the type VI secretion system of Francisella tularensis during intramacrophage infection. PLoS One 7:e50473 (2012). WB . PubMed: 23185631
  • Zhu W  et al. Comprehensive Identification of Protein Substrates of the Dot/Icm Type IV Transporter of Legionella pneumophila. PLoS One 6:e17638 (2011). WB . PubMed: 21408005
  • Miyata ST  et al. Vibrio cholerae requires the type VI secretion system virulence factor VasX to kill Dictyostelium discoideum. Infect Immun 79:2941-9 (2011). PubMed: 21555399
  • Wang Y  et al. Development of a transformation system for Chlamydia trachomatis: restoration of glycogen biosynthesis by acquisition of a plasmid shuttle vector. PLoS Pathog 7:e1002258 (2011). WB . PubMed: 21966270
  • Brinkworth AJ  et al. Chlamydia trachomatis Slc1 is a type III secretion chaperone that enhances the translocation of its invasion effector substrate TARP. Mol Microbiol 82:131-44 (2011). WB . PubMed: 21883523
  • Waraho D & Delisa MP Versatile selection technology for intracellular protein-protein interactions mediated by a unique bacterial hitchhiker transport mechanism. Proc Natl Acad Sci U S A 106:3692-7 (2009). WB ; Escherichia coli . PubMed: 19234130

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