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Found 978 results
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2014
Sander AF, Lavstsen T, Rask TS, Lisby M, Salanti A, Fordyce SL, Jespersen JS, Carter R, Deitsch K, Theander TG et al..  2014.  DNA secondary structures are associated with recombination in major Plasmodium falciparum variable surface antigen gene families.. Nucleic Acids Res. 42(4):2270-81.
Janovitz T, Oliveira T, Sadelain M, Falck-Pedersen E.  2014.  Highly divergent integration profile of adeno-associated virus serotype 5 revealed by high-throughput sequencing.. J Virol. 88(5):2481-8.
Puckett S, Trujillo C, Eoh H, Marrero J, Spencer J, Jackson M, Schnappinger D, Rhee K, Ehrt S.  2014.  Inactivation of fructose-1,6-bisphosphate aldolase prevents optimal co-catabolism of glycolytic and gluconeogenic carbon substrates in Mycobacterium tuberculosis.. PLoS Pathog. 10(5):e1004144.
Puckett S, Trujillo C, Eoh H, Marrero J, Spencer J, Jackson M, Schnappinger D, Rhee K, Ehrt S.  2014.  Inactivation of fructose-1,6-bisphosphate aldolase prevents optimal co-catabolism of glycolytic and gluconeogenic carbon substrates in Mycobacterium tuberculosis.. PLoS Pathog. 10(5):e1004144.
Gouzy A, Larrouy-Maumus G, Bottai D, Levillain F, Dumas A, Wallach JB, Caire-Brandli I, de Chastellier C, Di Wu T-, Poincloux R et al..  2014.  Mycobacterium tuberculosis exploits asparagine to assimilate nitrogen and resist acid stress during infection.. PLoS Pathog. 10(2):e1003928.
Danilchanka O, Sun J, Pavlenok M, Maueröder C, Speer A, Siroy A, Marrero J, Trujillo C, Mayhew DL, Doornbos KS et al..  2014.  An outer membrane channel protein of Mycobacterium tuberculosis with exotoxin activity.. Proc Natl Acad Sci U S A. 111(18):6750-5.
Danilchanka O, Sun J, Pavlenok M, Maueröder C, Speer A, Siroy A, Marrero J, Trujillo C, Mayhew DL, Doornbos KS et al..  2014.  An outer membrane channel protein of Mycobacterium tuberculosis with exotoxin activity.. Proc Natl Acad Sci U S A. 111(18):6750-5.
Danilchanka O, Sun J, Pavlenok M, Maueröder C, Speer A, Siroy A, Marrero J, Trujillo C, Mayhew DL, Doornbos KS et al..  2014.  An outer membrane channel protein of Mycobacterium tuberculosis with exotoxin activity.. Proc Natl Acad Sci U S A. 111(18):6750-5.
Coleman BI, Skillman KM, H Y Jiang R, Childs LM, Altenhofen LM, Ganter M, Leung Y, Goldowitz I, Kafsack BFC, Marti M et al..  2014.  A Plasmodium falciparum histone deacetylase regulates antigenic variation and gametocyte conversion.. Cell Host Microbe. 16(2):177-186.
Raju RM, Jedrychowski MP, Wei J-R, Pinkham JT, Park AS, O'Brien K, Rehren G, Schnappinger D, Gygi SP, Rubin EJ.  2014.  Post-translational regulation via Clp protease is critical for survival of Mycobacterium tuberculosis.. PLoS Pathog. 10(3):e1003994.
Schnappinger D, Ehrt S.  2014.  Regulated Expression Systems for Mycobacteria and Their Applications.. Microbiol Spectr. 2(1):MGM2-0018-2013.
Schnappinger D, Ehrt S.  2014.  Regulated Expression Systems for Mycobacteria and Their Applications.. Microbiol Spectr. 2(1)
Sonnenberg GF.  2014.  Regulation of intestinal health and disease by innate lymphoid cells.. Int Immunol. 26(9):501-7.
Hepworth MR, Sonnenberg GF.  2014.  Regulation of the adaptive immune system by innate lymphoid cells.. Curr Opin Immunol. 27:75-82.
Trujillo C, Blumenthal A, Marrero J, Rhee KY, Schnappinger D, Ehrt S.  2014.  Triosephosphate isomerase is dispensable in vitro yet essential for Mycobacterium tuberculosis to establish infection.. mBio. 5(2):e00085.
2013
Shi C, Tiwari D, Wilson DJ, Seiler CL, Schnappinger D, Aldrich CC.  2013.  Bisubstrate Inhibitors of Biotin Protein Ligase in Mycobacterium tuberculosis Resistant to Cyclonucleoside Formation.. ACS Med Chem Lett. 4(12)
Shi C, Tiwari D, Wilson DJ, Seiler CL, Schnappinger D, Aldrich CC.  2013.  Bisubstrate Inhibitors of Biotin Protein Ligase in Mycobacterium tuberculosis Resistant to Cyclonucleoside Formation.. ACS Med Chem Lett. 4(12)
Shi C, Tiwari D, Wilson DJ, Seiler CL, Schnappinger D, Aldrich CC.  2013.  Bisubstrate Inhibitors of Biotin Protein Ligase in Mycobacterium tuberculosis Resistant to Cyclonucleoside Formation.. ACS Med Chem Lett. 4(12)
Lew JM, Mao C, Shukla M, Warren A, Will R, Kuznetsov D, Xenarios I, Robertson BD, Gordon SV, Schnappinger D et al..  2013.  Database resources for the tuberculosis community.. Tuberculosis (Edinb). 93(1):12-7.
Lew JM, Mao C, Shukla M, Warren A, Will R, Kuznetsov D, Xenarios I, Robertson BD, Gordon SV, Schnappinger D et al..  2013.  Database resources for the tuberculosis community.. Tuberculosis (Edinb). 93(1):12-7.
Lew JM, Mao C, Shukla M, Warren A, Will R, Kuznetsov D, Xenarios I, Robertson BD, Gordon SV, Schnappinger D et al..  2013.  Database resources for the tuberculosis community.. Tuberculosis (Edinb). 93(1):12-7.
Heinberg A, Siu E, Stern C, Lawrence EA, Ferdig MT, Deitsch K, Kirkman L.  2013.  Direct evidence for the adaptive role of copy number variation on antifolate susceptibility in Plasmodium falciparum.. Mol Microbiol. 88(4):702-12.
Heinberg A, Siu E, Stern C, Lawrence EA, Ferdig MT, Deitsch K, Kirkman L.  2013.  Direct evidence for the adaptive role of copy number variation on antifolate susceptibility in Plasmodium falciparum.. Mol Microbiol. 88(4):702-12.
Kim J-H, O'Brien KM, Sharma R, Boshoff HIM, Rehren G, Chakraborty S, Wallach JB, Monteleone M, Wilson DJ, Aldrich CC et al..  2013.  A genetic strategy to identify targets for the development of drugs that prevent bacterial persistence.. Proc Natl Acad Sci U S A. 110(47):19095-100.
Kim J-H, O'Brien KM, Sharma R, Boshoff HIM, Rehren G, Chakraborty S, Wallach JB, Monteleone M, Wilson DJ, Aldrich CC et al..  2013.  A genetic strategy to identify targets for the development of drugs that prevent bacterial persistence.. Proc Natl Acad Sci U S A. 110(47):19095-100.