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Lipidomic discovery of deoxysiderophores reveals a revised ..:
Madigan, Cressida A.
;
Cheng, Tan-Yun
;
Layre, Emilie
...
Proceedings of the National Academy of Sciences of the United States of America. 109 (2012) 4 - p. 1257-1262 , 2012
Link:
https://www.jstor.org/stable/41477234
RT Journal T1
Lipidomic discovery of deoxysiderophores reveals a revised mycobactin biosynthesis pathway in Mycobacterium tuberculosis
UL https://suche.suub.uni-bremen.de/peid=jstor-41477234&Exemplar=1&LAN=DE A1 Madigan, Cressida A. A1 Cheng, Tan-Yun A1 Layre, Emilie A1 Young, David C. A1 McConnell, Matthew J. A1 Debono, C. Anthony A1 Murry, Jeffrey P. A1 Wei, Jun-Rong A1 Barry 3rd, Clifton E. A1 Rodriguez, G. Marcela A1 Matsunaga, Isamu A1 Rubin, Eric J. A1 Moody, D. Branch PB National Academy of Sciences YR 2012 SN 0027-8424 K1 Biological sciences K1 Biochemistry K1 Biomolecules K1 Macromolecules K1 Lipids K1 Biology K1 Microbiology K1 Bacteriology K1 Bacteria K1 Gram positive bacteria K1 Actinobacteria K1 Actinomycetales K1 Mycobacterium K1 Mycobacterium tuberculosis K1 Metabolism K1 Biosynthesis K1 Physical sciences K1 Earth sciences K1 Geology K1 Geologic processes K1 Weathering processes K1 Chemical weathering K1 Biological weathering K1 Siderophores K1 Information science K1 Data products K1 Datasets K1 Applied sciences K1 Research methods K1 Modeling K1 Physiology K1 Body composition K1 Body fluids K1 Blood K1 Blood cells K1 Leukocytes K1 Mononuclear leukocytes K1 Lymphocytes K1 T lymphocytes K1 Health sciences K1 Medical conditions K1 Infections K1 Bacterial infections K1 Gram positive bacterial infections K1 Tuberculosis K1 Physics K1 Microphysics K1 Molecular physics K1 Molecules K1 Chemistry K1 Chemical compounds K1 Chemicals K1 Polymers K1 Biopolymers K1 Proteins K1 Enzymes JF Proceedings of the National Academy of Sciences of the United States of America VO 109 IS 4 SP 1257 OP 1262 LK http://dx.doi.org/https://www.jstor.org/stable/41477234 DO https://www.jstor.org/stable/41477234 SF ELIB - SuUB Bremen
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