Hannah Johnson

Affiliations: 
Biological Engineering Massachusetts Institute of Technology, Cambridge, MA, United States 
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"Hannah Johnson"
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Cross-listing: Chemistry Tree

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Publications

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Johnson H, White FM. (2018) Quantitative Analysis of Tyrosine Kinase Signaling Across Differentially Embedded Human Glioblastoma Tumors. Methods in Molecular Biology (Clifton, N.J.). 1711: 149-164
Tuncbag N, Milani P, Pokorny JL, et al. (2016) Network Modeling Identifies Patient-specific Pathways in Glioblastoma. Scientific Reports. 6: 28668
Kravchenko-Balasha N, Johnson H, White FM, et al. (2016) A Thermodynamic Based Interpretation of Protein Expression Heterogeneity in Different GBM Tumors Identifies Tumor Specific Unbalanced Processes. The Journal of Physical Chemistry. B
Gajadhar AS, Johnson H, Slebos RJ, et al. (2015) Phosphotyrosine signaling analysis in human tumors is confounded by systemic ischemia-driven artifacts and intra-specimen heterogeneity. Cancer Research. 75: 1495-503
Johnson H. (2015) Uncovering dynamic phosphorylation signaling using mass spectrometry International Journal of Mass Spectrometry
Johnson H, White FM. (2014) Quantitative analysis of signaling networks across differentially embedded tumors highlights interpatient heterogeneity in human glioblastoma. Journal of Proteome Research. 13: 4581-93
Arneja A, Johnson H, Gabrovsek L, et al. (2014) Qualitatively different T cell phenotypic responses to IL-2 versus IL-15 are unified by identical dependences on receptor signal strength and duration. Journal of Immunology (Baltimore, Md. : 1950). 192: 123-35
Miraldi ER, Sharfi H, Friedline RH, et al. (2013) Molecular network analysis of phosphotyrosine and lipid metabolism in hepatic PTP1b deletion mice. Integrative Biology : Quantitative Biosciences From Nano to Macro. 5: 940-63
Curran TG, Bryson BD, Reigelhaupt M, et al. (2013) Computer aided manual validation of mass spectrometry-based proteomic data. Methods (San Diego, Calif.). 61: 219-26
Johnson H, Lescarbeau RS, Gutierrez JA, et al. (2013) Phosphotyrosine profiling of NSCLC cells in response to EGF and HGF reveals network specific mediators of invasion. Journal of Proteome Research. 12: 1856-67
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