Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Institutional National Research Service Award (T32)
Project #
2T32GM007215-11
Application #
3537005
Study Section
Cellular and Molecular Basis of Disease Review Committee (CMBD)
Project Start
1975-07-01
Project End
1990-06-30
Budget Start
1985-07-01
Budget End
1986-06-30
Support Year
11
Fiscal Year
1985
Total Cost
Indirect Cost
Name
University of Wisconsin Madison
Department
Type
Graduate Schools
DUNS #
161202122
City
Madison
State
WI
Country
United States
Zip Code
53715
Karlsson, Erik A; Meliopoulos, Victoria A; Tran, Vy et al. (2018) Measuring Influenza Virus Infection Using Bioluminescent Reporter Viruses for In Vivo Imaging and In Vitro Replication Assays. Methods Mol Biol 1836:431-459
Doroshenko, Alexander; Pepperell, Caitlin S; Heffernan, Courtney et al. (2018) Epidemiological and genomic determinants of tuberculosis outbreaks in First Nations communities in Canada. BMC Med 16:128
Umlauf, Benjamin J; Mix, Kalie A; Grosskopf, Vanessa A et al. (2018) Site-Specific Antibody Functionalization Using Tetrazine-Styrene Cycloaddition. Bioconjug Chem 29:1605-1613
Mortimer, Tatum D; Weber, Alexandra M; Pepperell, Caitlin S (2018) Signatures of Selection at Drug Resistance Loci in Mycobacterium tuberculosis. mSystems 3:
Florek, Nicholas W; Campos, Luiza M; Braun, Katarina M et al. (2018) An updated influenza A(H3N2) vaccine generates limited antibody responses to previously encountered antigens in children. Vaccine 36:758-764
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Esquilín-Lebrón, Karla J; Boynton, Tye O; Shimkets, Lawrence J et al. (2018) An orphan MbtH-like protein interacts with multiple nonribosomal peptide synthetases in Myxococcus xanthus DK1622. J Bacteriol :
Jha, Pooja; McDevitt, Molly T; Gupta, Rahul et al. (2018) Systems Analyses Reveal Physiological Roles and Genetic Regulators of Liver Lipid Species. Cell Syst 6:722-733.e6
Lowe-Power, Tiffany M; Hendrich, Connor G; von Roepenack-Lahaye, Edda et al. (2018) Metabolomics of tomato xylem sap during bacterial wilt reveals Ralstonia solanacearum produces abundant putrescine, a metabolite that accelerates wilt disease. Environ Microbiol 20:1330-1349

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