Publications

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Shortreed M.R, Lamos S.M, Frey B.L, Phillips M.F, Patel M., Belshaw P.J, Smith L.M.  2006.  Ionizable isotopic labeling reagent for relative quantification of amine metabolites by mass spectrometry. Analytical Chemistry. 78:6398-6403.
Frey B.L, Krusemark C.J, Ledvina A.R, Coon J.J, Belshaw P.J, Smith L.M.  2008.  Ion-ion reactions with fixed-charge modified proteins to produce ions in a single, very high charge state. International Journal of Mass Spectrometry. 276:136-143.
Lu M.C, Knickerbocker T., Cai W., Yang W.S, Hamers R.J, Smith L.M.  2004.  Invasive cleavage reactions on DNA-modified diamond surfaces. Biopolymers. 73:606-613.
Broderick A.H, Lockett M.R, Buck M.E, Yuan Y., Smith L.M, Lynn D.M.  2012.  In situ Synthesis of Oligonucleotide Arrays on Surfaces Coated with Crosslinked Polymer Multilayers. Chemistry of Materials. 24:938-945.
Broderick A.H, Lockett M.R, Buck M.E, Yuan Y., Smith L.M, Lynn D.M.  2012.  In situ Synthesis of Oligonucleotide Arrays on Surfaces Coated with Crosslinked Polymer Multilayers. Chemistry of Materials. 24:938-945.
Phillips MF, Lockett MR, Rodesch MJ, Shortreed MR, Cerrina F, Smith L.M.  2008.  In situ oligonucleotide synthesis on carbon materials: stable substrates for microarray fabrication. Nucleic Acids Research. 36
Lu L, Millikin RJ, Solntsev SK, Rolfs Z, Scalf M, Shortreed MR, Smith LM.  2018.  Identification of MS-Cleavable and Noncleavable Chemically Cross-Linked Peptides with MetaMorpheus. Journal of Proteome Research. 17(7):2370-2376.
Lee J.E, Mirza S.P, Didier D.N, Scalf M., Olivier M., Greene A.S, Smith L.M.  2008.  Identification of Cell Surface Markers to Differentiate Rat Endothelial and Fibroblast Cells Using Lectin Arrays and LC-ESI-MS/MS. Analytical Chemistry. 80:8269-8275.
Schaffer L.V, Millikin R.J, Miller R.M, Anderson L.C, Fellers R.T, Ge Y., Kelleher N.L, LeDuc R.D, Liu X., Payne S.H et al..  2019.  Identification and Quantification of Proteoforms by Mass Spectrometry. Proteomics.
Schaffer L.V, Millikin R.J, Miller R.M, Anderson L.C, Fellers R.T, Ge Y., Kelleher N.L, LeDuc R.D, Liu X., Payne S.H et al..  2019.  Identification and Quantification of Proteoforms by Mass Spectrometry. Proteomics.
H
Olson CN, Galloway MM, Yu G, Hedman CJ, Lockett MR, Yoon T.P, Stone EA, Smith L.M, Keutsch F.N.  2011.  Hydroxycarboxylic Acid-Derived Organosulfates: Synthesis, Stability, and Quantification in Ambient Aerosol. Environmental Science & Technology. 45:6468-6474.
Gillmor S.D, Thiel A.J, Strother T.C, Smith L.M, Lagally M.G.  2000.  Hydrophilic/hydrophobic patterned surfaces as templates for DNA arrays. Langmuir. 16:7223-7228.
Guillen-Ahlers H., Rao P.K, Levenstein M.E, Kennedy-Darling J., Perumalla D.S, Jadhav A.Y, Glenn J.P, Ludwig-Kubinski A., Drigalenko E., Montoya M.J et al..  2016.  HyCCAPP as a tool to characterize promoter DNA-protein interactions in Saccharomyces cerevisiae. Genomics. 107:267-273.
Guillen-Ahlers H., Rao P.K, Levenstein M.E, Kennedy-Darling J., Perumalla D.S, Jadhav A.Y, Glenn J.P, Ludwig-Kubinski A., Drigalenko E., Montoya M.J et al..  2016.  HyCCAPP as a tool to characterize promoter DNA-protein interactions in Saccharomyces cerevisiae. Genomics. 107:267-273.
Guillen-Ahlers H., Rao P.K, Levenstein M.E, Kennedy-Darling J., Perumalla D.S, Jadhav A.Y, Glenn J.P, Ludwig-Kubinski A., Drigalenko E., Montoya M.J et al..  2016.  HyCCAPP as a tool to characterize promoter DNA-protein interactions in Saccharomyces cerevisiae. Genomics. 107:267-273.
Aebersold R., Agar J.N, Amster I.J, Baker M.S, Bertozzi C.R, Boja E.S, Costello C.E, Cravatt B.F, Fenselau C., Garcia B.A et al..  2018.  How many human proteoforms are there? Nature Chemical Biology. 14:206-214.
Aebersold R., Agar J.N, Amster I.J, Baker M.S, Bertozzi C.R, Boja E.S, Costello C.E, Cravatt B.F, Fenselau C., Garcia B.A et al..  2018.  How many human proteoforms are there? Nature Chemical Biology. 14:206-214.
Aebersold R., Agar J.N, Amster I.J, Baker M.S, Bertozzi C.R, Boja E.S, Costello C.E, Cravatt B.F, Fenselau C., Garcia B.A et al..  2018.  How many human proteoforms are there? Nature Chemical Biology. 14:206-214.
Aebersold R., Agar J.N, Amster I.J, Baker M.S, Bertozzi C.R, Boja E.S, Costello C.E, Cravatt B.F, Fenselau C., Garcia B.A et al..  2018.  How many human proteoforms are there? Nature Chemical Biology. 14:206-214.
Drossman H., Luckey J.A, Kostichka A.J, Dcunha J., Smith L.M.  1990.  High-speed separations of DNA sequencing reactions by capillary electrophoresis. Analytical Chemistry. 62:900-903.
Luckey JA, Drossman H, Kostichka T, Smith L.M.  1993.  High-speed DNA sequencing by capillary gel electrophoresis. Methods in Enzymology. 218:154-72.
Luckey J.A, Drossman H., Kostichka A.J, Mead D.A, Dcunha J., Norris T.B, Smith L.M.  1990.  High speed DNA sequencing by capillary electrophoresis. Nucleic Acids Research. 18:4417-4421.
Lockett MR, Smith L.M.  2010.  Halogenation of Carbon Substrates for Increased Reactivity with Alkenes. Langmuir. 26:16642-16646.

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