Education
Ph.D. in Microbiology, The University of Chicago, Chicago, IL, 2006
Current position
Assistant Professor, Department of Biology, TEXAS A&M UNIVERSITY, College Station, TX (2010-present)
Publications
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Francis, M. B., Allen, C. A. and Sorg, J. A. (2013). Muricholic acids inhibit Clostridium difficile spore germination and growth. PLoS One 8(9): e73653.
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Francis, M. B., Allen, C. A., Shrestha, R. and Sorg, J. A. (2013). Bile acid recognition by the Clostridium difficile germinant receptor, CspC, is important for establishing infection. PLoS Pathog 9(5): e1003356.
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Chen, S., Wilson-Stanford, S., Cromwell, W., Hillman, J. D., Guerrero, A., Allen, C. A., Sorg, J. A. and Smith, L. (2013). Site-directed mutations in the lanthipeptide mutacin 1140. Appl Environ Microbiol 79(13): 4015-4023.
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Richter, S. G., Elli, D., Kim, H. K., Hendrickx, A. P., Sorg, J. A., Schneewind, O. and Missiakas, D. (2013). Small molecule inhibitor of lipoteichoic acid synthesis is an antibiotic for Gram-positive bacteria. Proc Natl Acad Sci U S A 110(9): 3531-3536.
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Allen, C. A., Babakhani, F., Sears, P., Nguyen, L. and Sorg, J. A. (2013). Both fidaxomicin and vancomycin inhibit outgrowth of Clostridium difficile spores. Antimicrob Agents Chemother 57(1): 664-667.
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Bouillaut, L., McBride, S. M. and Sorg, J. A.* (2011). Genetic manipulation of Clostridium difficile. Curr Protoc Microbiol Chapter 9: Unit 9A 2.
*Corresponding author
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Sorg, J. A. and Sonenshein, A. L. (2010). Inhibiting the initiation of Clostridium difficile spore germination using analogs of chenodeoxycholic acid, a bile acid. J Bacteriol 192(19): 4983-4990.
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Giel, J. L., Sorg, J. A., Sonenshein, A. L. and Zhu, J. (2010). Metabolism of bile salts in mice influences spore germination in Clostridium difficile. PLoS One 5(1): e8740.
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Sorg, J. A.* and Dineen, S. S. (2009). Laboratory maintenance of Clostridium difficile. Curr Protoc Microbiol Chapter 9: Unit9A 1.
*Corresponding author
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Sorg, J. A. and Sonenshein, A. L. (2009). Chenodeoxycholate is an inhibitor of Clostridium difficile spore germination. J Bacteriol 191(3): 1115-1117.
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Blaylock, B., Sorg, J. A. and Schneewind, O. (2008). Yersinia enterocolitica type III secretion of YopR requires a structure in its mRNA. Mol Microbiol 70(5): 1210-1222.
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Riordan, K. E., Sorg, J. A., Berube, B. J. and Schneewind, O. (2008). Impassable YscP substrates and their impact on the Yersinia enterocolitica type III secretion pathway. J Bacteriol 190(18): 6204-6216.
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Sorg, J. A. and Sonenshein, A. L. (2008). Bile salts and glycine as cogerminants for Clostridium difficile spores. J Bacteriol 190(7): 2505-2512.
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Sorg, J. A., Blaylock, B. and Schneewind, O. (2006). Secretion signal recognition by YscN, the Yersinia type III secretion ATPase. Proc Natl Acad Sci U S A 103(44): 16490-16495.
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Sorg, J. A., Miller, N. C., Marketon, M. M. and Schneewind, O. (2005). Rejection of impassable substrates by Yersinia type III secretion machines. J Bacteriol 187(20): 7090-7102.
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Sorg, J. A., Miller, N. C. and Schneewind, O. (2005). Substrate recognition of type III secretion machines--testing the RNA signal hypothesis. Cell Microbiol 7(9): 1217-1225.
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Goss, J. W.*, Sorg, J. A.*, Ramamurthi, K. S., Ton-That, H. and Schneewind, O. (2004). The secretion signal of YopN, a regulatory protein of the Yersinia enterocolitica type III secretion pathway. J Bacteriol 186(18): 6320-6324.
*These authors contributed equally to this work.
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Cambronne, E. D., Sorg, J. A. and Schneewind, O. (2004). Binding of SycH chaperone to YscM1 and YscM2 activates effector yop expression in Yersinia enterocolitica. J Bacteriol 186(3): 829-841.