You are here

Publications

Found 611 results
Author [ Title(Desc)] Type Year
Filters: First Letter Of Last Name is S  [Clear All Filters]
A B C D E F G H I J K L M N O P Q R S T U V W X Y Z 
C
Sonnenberg GF, Monticelli LA, M Elloso M, Fouser LA, Artis D.  2011.  CD4(+) lymphoid tissue-inducer cells promote innate immunity in the gut.. Immunity. 34(1):122-34.
Stein SC, Lam E, Falck-Pedersen E.  2012.  Cell-specific regulation of nucleic acid sensor cascades: a controlling interest in the antiviral response.. J Virol. 86(24):13303-12.
Rhee KY, de Carvalho LPedro Sori, Bryk R, Ehrt S, Marrero J, Park SWoong, Schnappinger D, Venugopal A, Nathan C.  2011.  Central carbon metabolism in Mycobacterium tuberculosis: an unexpected frontier.. Trends Microbiol. 19(7):307-14.
Dey AK, Cupo A, Ozorowski G, Sharma VK, Behrens A-J, Go EP, Ketas TJ, Yasmeen A, Klasse PJ, Sayeed E et al..  2018.  cGMP production and analysis of BG505 SOSIP.664, an extensively glycosylated, trimeric HIV-1 envelope glycoprotein vaccine candidate.. Biotechnol Bioeng. 115(4):885-899.
Dey AK, Cupo A, Ozorowski G, Sharma VK, Behrens A-J, Go EP, Ketas TJ, Yasmeen A, Klasse PJ, Sayeed E et al..  2018.  cGMP production and analysis of BG505 SOSIP.664, an extensively glycosylated, trimeric HIV-1 envelope glycoprotein vaccine candidate.. Biotechnol Bioeng. 115(4):885-899.
Dey AK, Cupo A, Ozorowski G, Sharma VK, Behrens A-J, Go EP, Ketas TJ, Yasmeen A, Klasse PJ, Sayeed E et al..  2018.  cGMP production and analysis of BG505 SOSIP.664, an extensively glycosylated, trimeric HIV-1 envelope glycoprotein vaccine candidate.. Biotechnol Bioeng. 115(4):885-899.
Sutherland JH, Holloman WK.  2019.  Characterization of a potent dominant negative mutant variant of Rad51 in Ustilago maydis.. DNA Repair (Amst). 78:91-101.
Schneider S, Hotz H-R, Schwer B.  2002.  Characterization of dominant-negative mutants of the DEAH-box splicing factors Prp22 and Prp16.. J Biol Chem. 277(18):15452-8.
Schneider S, Hotz H-R, Schwer B.  2002.  Characterization of dominant-negative mutants of the DEAH-box splicing factors Prp22 and Prp16.. J Biol Chem. 277(18):15452-8.
Salazar E, Bank EM, Ramsey N, Hess KC, Deitsch K, Levin LR, Buck J.  2012.  Characterization of Plasmodium falciparum adenylyl cyclase-β and its role in erythrocytic stage parasites.. PLoS One. 7(6):e39769.
Schwer B, Lehman K, Saha N, Shuman S.  2001.  Characterization of the mRNA capping apparatus of Candida albicans.. J Biol Chem. 276(3):1857-64.
Schwer B, Lehman K, Saha N, Shuman S.  2001.  Characterization of the mRNA capping apparatus of Candida albicans.. J Biol Chem. 276(3):1857-64.
Schwer B, Lehman K, Saha N, Shuman S.  2001.  Characterization of the mRNA capping apparatus of Candida albicans.. J Biol Chem. 276(3):1857-64.
Tanaka N, Schwer B.  2005.  Characterization of the NTPase, RNA-binding, and RNA helicase activities of the DEAH-box splicing factor Prp22.. Biochemistry. 44(28):9795-803.
Xu W, DeJesus MA, Rücker N, Engelhart CA, Wright MG, Healy C, Lin K, Wang R, Park SWoong, Ioerger TR et al..  2017.  Chemical Genetic Interaction Profiling Reveals Determinants of Intrinsic Antibiotic Resistance in Mycobacterium tuberculosis.. Antimicrob Agents Chemother. 61(12)
van Montfort T, Melchers M, Isik G, Menis S, Huang P-S, Matthews K, Michael E, Berkhout B, Schief WR, Moore JP et al..  2011.  A chimeric HIV-1 envelope glycoprotein trimer with an embedded granulocyte-macrophage colony-stimulating factor (GM-CSF) domain induces enhanced antibody and T cell responses.. J Biol Chem. 286(25):22250-61.
van Montfort T, Melchers M, Isik G, Menis S, Huang P-S, Matthews K, Michael E, Berkhout B, Schief WR, Moore JP et al..  2011.  A chimeric HIV-1 envelope glycoprotein trimer with an embedded granulocyte-macrophage colony-stimulating factor (GM-CSF) domain induces enhanced antibody and T cell responses.. J Biol Chem. 286(25):22250-61.
Liu J, Malkani G, Mankani G, Shi X, Meyer M, Cunningham-Runddles S, Ma X, Sun ZSheng.  2006.  The circadian clock Period 2 gene regulates gamma interferon production of NK cells in host response to lipopolysaccharide-induced endotoxic shock.. Infect Immun. 74(8):4750-6.
Liu J, Malkani G, Mankani G, Shi X, Meyer M, Cunningham-Runddles S, Ma X, Sun ZSheng.  2006.  The circadian clock Period 2 gene regulates gamma interferon production of NK cells in host response to lipopolysaccharide-induced endotoxic shock.. Infect Immun. 74(8):4750-6.
Mack CA, Song WR, Carpenter H, Wickham TJ, Kovesdi I, Harvey BG, Magovern CJ, Isom OW, Rosengart T, Falck-Pedersen E et al..  1997.  Circumvention of anti-adenovirus neutralizing immunity by administration of an adenoviral vector of an alternate serotype.. Hum Gene Ther. 8(1):99-109.
Diaz F, Gravotta D, Deora A, Schreiner R, Schoggins J, Falck-Pedersen E, Rodriguez-Boulan E.  2009.  Clathrin adaptor AP1B controls adenovirus infectivity of epithelial cells.. Proc Natl Acad Sci U S A. 106(27):11143-8.
Diaz F, Gravotta D, Deora A, Schreiner R, Schoggins J, Falck-Pedersen E, Rodriguez-Boulan E.  2009.  Clathrin adaptor AP1B controls adenovirus infectivity of epithelial cells.. Proc Natl Acad Sci U S A. 106(27):11143-8.
Xie QW, Cho HJ, Calaycay J, Mumford RA, Swiderek KM, Lee TD, Ding A, Troso T, Nathan C.  1992.  Cloning and characterization of inducible nitric oxide synthase from mouse macrophages.. Science. 256(5054):225-8.
Niederweis M, Ehrt S, Heinz C, Klöcker U, Karosi S, Swiderek KM, Riley LW, Benz R.  1999.  Cloning of the mspA gene encoding a porin from Mycobacterium smegmatis.. Mol Microbiol. 33(5):933-45.
Ringe RP, Pugach P, Cottrell CA, LaBranche CC, Seabright GE, Ketas TJ, Ozorowski G, Kumar S, Schorcht A, van Gils MJ et al..  2019.  Closing and Opening Holes in the Glycan Shield of HIV-1 Envelope Glycoprotein SOSIP Trimers Can Redirect the Neutralizing Antibody Response to the Newly Unmasked Epitopes.. J Virol. 93(4)