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Wang H, Wang C, Peng G, Yu D, Cui X-G, Sun Y-H, Ma X.  2020.  Capping Protein Regulator and Myosin 1 Linker 3 Is Required for Tumor Metastasis.. Mol Cancer Res. 18(2):240-252.
Sinha A, Hughes KR, Modrzynska KK, Otto TD, Pfander C, Dickens NJ, Religa AA, Bushell E, Graham AL, Cameron R et al..  2014.  A cascade of DNA-binding proteins for sexual commitment and development in Plasmodium.. Nature. 507(7491):253-257.
Lv D, Zhang Y, Kim H-J, Zhang L, Ma X.  2013.  CCL5 as a potential immunotherapeutic target in triple-negative breast cancer.. Cell Mol Immunol. 10(4):303-10.
Mackley EC, Houston S, Marriott CL, Halford EE, Lucas B, Cerovic V, Filbey KJ, Maizels RM, Hepworth MR, Sonnenberg GF et al..  2015.  CCR7-dependent trafficking of RORγ⁺ ILCs creates a unique microenvironment within mucosal draining lymph nodes.. Nat Commun. 6:5862.
Mackley EC, Houston S, Marriott CL, Halford EE, Lucas B, Cerovic V, Filbey KJ, Maizels RM, Hepworth MR, Sonnenberg GF et al..  2015.  CCR7-dependent trafficking of RORγ⁺ ILCs creates a unique microenvironment within mucosal draining lymph nodes.. Nat Commun. 6:5862.
Mackley EC, Houston S, Marriott CL, Halford EE, Lucas B, Cerovic V, Filbey KJ, Maizels RM, Hepworth MR, Sonnenberg GF et al..  2015.  CCR7-dependent trafficking of RORγ⁺ ILCs creates a unique microenvironment within mucosal draining lymph nodes.. Nat Commun. 6:5862.
Mackley EC, Houston S, Marriott CL, Halford EE, Lucas B, Cerovic V, Filbey KJ, Maizels RM, Hepworth MR, Sonnenberg GF et al..  2015.  CCR7-dependent trafficking of RORγ⁺ ILCs creates a unique microenvironment within mucosal draining lymph nodes.. Nat Commun. 6:5862.
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.
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.
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.
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.
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.
Calhoun SF, Reed J, Alexander N, Mason CE, Deitsch KW, Kirkman LA.  2017.  Chromosome End Repair and Genome Stability in .. mBio. 8(4)
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.
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.