Tanveer Singh Batth
Forsker
Olsen Group
Blegdamsvej 3B
2200 København N
- Published
Proteome and Phosphoproteome Changes Associated with Prognosis in Acute Myeloid Leukemia
Aasebø, E., Berven, F. S., Bartaula-Brevik, S., Stokowy, T., Hovland, R., Vaudel, M., Døskeland, S. O., McCormack, E., Batth, Tanveer Singh, Olsen, Jesper Velgaard, Bruserud, Ø., Selheim, F. & Hernandez-Valladares, M., 2020, In: Cancers. 12, 3, 26 p., 709.Research output: Contribution to journal › Journal article › peer-review
Metabolic engineering of Escherichia coli for limonene and perillyl alcohol production
Alonso-Gutierrez, J., Chan, R., Batth, Tanveer Singh, Adams, P. D., Keasling, J. D., Petzold, C. J. & Lee, T. S., Sep 2013, In: Metabolic Engineering. 19, p. 33-41 9 p.Research output: Contribution to journal › Journal article › peer-review
Principal component analysis of proteomics (PCAP) as a tool to direct metabolic engineering
Alonso-Gutierrez, J., Kim, E., Batth, Tanveer Singh, Cho, N., Hu, Q., Chan, L. J. G., Petzold, C. J., Hillson, N. J., Adams, P. D., Keasling, J. D., Garcia Martin, H. & Lee, T. S., 2015, In: Metabolic Engineering. 28, p. 123-133 11 p.Research output: Contribution to journal › Journal article › peer-review
- Published
Off-Line High-pH Reversed-Phase Fractionation for In-Depth Phosphoproteomics
Batth, Tanveer Singh, Francavilla, C. & Olsen, Jesper Velgaard, 4 Nov 2014, In: Journal of Proteome Research. 13, 12, p. 6176-86 11 p.Research output: Contribution to journal › Journal article › peer-review
A targeted proteomics toolkit for high-throughput absolute quantification of Escherichia coli proteins
Batth, Tanveer Singh, Singh, P., Ramakrishnan, V. R., Sousa, M. M. L., Chan, L. J. G., Tran, H. M., Luning, E. G., Pan, E. H. Y., Vuu, K. M., Keasling, J. D., Adams, P. D. & Petzold, C. J., 2014, In: Metabolic Engineering. 26, p. 48-56 9 p.Research output: Contribution to journal › Journal article › peer-review
Targeted proteomics for metabolic pathway optimization
Batth, Tanveer Singh, Keasling, J. D. & Petzold, C. J., 2012, Methods in Molecular Biology. Vol. 944. p. 237-49 13 p. (Methods in molecular biology (Clifton, N.J.)).Research output: Chapter in Book/Report/Conference proceeding › Book chapter › Communication
- Published
Offline High pH Reversed-Phase Peptide Fractionation for Deep Phosphoproteome Coverage
Batth, Tanveer Singh & Olsen, Jesper Velgaard, 2016, Phospho-Proteomics: Methods and Protocols. Stechow, L. V. (ed.). Springer, Vol. 1355. p. 179-92 14 p. (Methods in molecular biology (Clifton, N.J.)).Research output: Chapter in Book/Report/Conference proceeding › Book chapter › Research › peer-review
- Published
Large-Scale Phosphoproteomics Reveals Shp-2 Phosphatase-Dependent Regulators of Pdgf Receptor Signaling
Batth, Tanveer Singh, Papetti, M., Pfeiffer, A., Tollenaere, M. A. X., Francavilla, C. & Olsen, Jesper Velgaard, 2018, In: Cell Reports. 22, 10, p. 2784-2796 14 p.Research output: Contribution to journal › Journal article › peer-review
- Published
A seven-transmembrane methyltransferase catalysing N-terminal histidine methylation of lytic polysaccharide monooxygenases
Batth, Tanveer Singh, Simonsen, J. L., Hernandez Rollan, Cristina, Brander, Søren, Morth, J. P., Johansen, K. S., Nørholm, M. H. H., Hoof, J. B. & Olsen, Jesper Velgaard, 2023, In: Nature Communications. 14, 15 p., 4202.Research output: Contribution to journal › Journal article › peer-review
- Published
Protein aggregation capture on microparticles enables multi-purpose proteomics sample preparation
Batth, Tanveer Singh, Tollenaere, M. A. X., Rüther, P. L., Gonzalez-Franquesa, A., Prabhakar, B. S., Bekker-Jensen, Simon Holst, Deshmukh, Atul Shahaji & Olsen, Jesper Velgaard, 2019, In: Molecular and Cellular Proteomics. 18, 5, p. 1027-1035Research output: Contribution to journal › Journal article › peer-review
ID: 40485347
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Off-Line High-pH Reversed-Phase Fractionation for In-Depth Phosphoproteomics
Research output: Contribution to journal › Journal article › peer-review
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An Optimized Shotgun Strategy for the Rapid Generation of Comprehensive Human Proteomes
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The ubiquitin ligase Cullin5SOCS2 regulates NDR1/STK38 stability and NF-κB transactivation
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