Publications

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Journal Article
Smith L.M.  1988.  Fluorescence-based automated DNA sequence analysis. Genet. Eng. (N. Y.). 10:91-108.
Smith L.M, Sanders JZ, Kaiser RJ, Hughes P, Dodd C, Connell CR, Heiner C, Kent SBH, Hood LE.  1986.  Fluorescence detection in automated DNA sequence analysis. Nature. 321:674-9.
Smith L.M, Sanders JZ, Kaiser RJ, Hughes P, Dodd C, Connell CR, Heiner C, Kent SBH, Hood LE.  1986.  Fluorescence detection in automated DNA sequence analysis. Nature. 321:674-9.
Jagtap P.D, Johnson J.E, Onsongo G., Sadler F.W, Murray K., Wang Y.B, Shenykrnan G.M, Bandhakavi S., Smith L.M, Griffin T.J.  2014.  Flexible and Accessible Workflows for Improved Proteogenomic Analysis Using the Galaxy Framework. Journal of Proteome Research. 13:5898-5908.
Jagtap P.D, Johnson J.E, Onsongo G., Sadler F.W, Murray K., Wang Y.B, Shenykrnan G.M, Bandhakavi S., Smith L.M, Griffin T.J.  2014.  Flexible and Accessible Workflows for Improved Proteogenomic Analysis Using the Galaxy Framework. Journal of Proteome Research. 13:5898-5908.
Jagtap P.D, Johnson J.E, Onsongo G., Sadler F.W, Murray K., Wang Y.B, Shenykrnan G.M, Bandhakavi S., Smith L.M, Griffin T.J.  2014.  Flexible and Accessible Workflows for Improved Proteogenomic Analysis Using the Galaxy Framework. Journal of Proteome Research. 13:5898-5908.
Smith L.M, Thomas P.M, Shortreed M.R, Schaffer L.V, Fellers R.T, LeDuc R.D, Tucholski T., Ge Y., Agar J.A, Anderson L.C et al..  2019.  A five-level classification system for proteoform identifications. Nature methods. 16(10)
Smith L.M, Thomas P.M, Shortreed M.R, Schaffer L.V, Fellers R.T, LeDuc R.D, Tucholski T., Ge Y., Agar J.A, Anderson L.C et al..  2019.  A five-level classification system for proteoform identifications. Nature methods. 16(10)
Smith L.M, Thomas P.M, Shortreed M.R, Schaffer L.V, Fellers R.T, LeDuc R.D, Tucholski T., Ge Y., Agar J.A, Anderson L.C et al..  2019.  A five-level classification system for proteoform identifications. Nature methods. 16(10)
Smith L.M, Thomas P.M, Shortreed M.R, Schaffer L.V, Fellers R.T, LeDuc R.D, Tucholski T., Ge Y., Agar J.A, Anderson L.C et al..  2019.  A five-level classification system for proteoform identifications. Nature methods. 16(10)
Kim HS, Qin H, Westphall MS, Smith L.M, Blick RH.  2007.  Field emission from a single nanomechanical pillar. Nanotechnology. 18
Tang W, Krause J, Zhu L, Smith L.M.  1997.  Factors influencing oligonucleotide stability in matrix-assisted laser desorption/ionization (MALDI) mass spectroscopy. International Journal of Mass Spectrometry and Ion Processes. 169/170:301-311.
Broderick A.H, Carter M.CD, Lockett M.R, Smith L.M, Lynn D.M.  2013.  Fabrication of Oligonucleotide and Protein Arrays on Rigid and Flexible Substrates Coated with Reactive Polymer Multilayers. ACS Applied Materials & Interfaces. 5:351-359.
Denton D.D, Thiel A.J, Smith L.M, Bajikar S., White V., Ghodssi R., Fish G., McCaughan L..  1994.  Fabrication of microstructures for use in biological and optical applications. Proceedings - Electrochemical Society. 94-14:103-14.
Lockett M.R, Smith L.M.  2009.  Fabrication and Characterization of DNA Arrays Prepared on Carbon-on-Metal Substrates. Analytical Chemistry. 81:6429-6437.
Murray JK, Sadowsky JD, Scalf M, Smith L.M, Tomita Y, Gellman S.H.  2008.  Exploration of structure - Activity relationships among foldamer ligands for a specific protein binding site via parallel and split-and-mix library synthesis. Journal of Combinatorial Chemistry. 10:204-215.
Murray JK, Sadowsky JD, Scalf M, Smith L.M, Tomita Y, Gellman S.H.  2008.  Exploration of structure - Activity relationships among foldamer ligands for a specific protein binding site via parallel and split-and-mix library synthesis. Journal of Combinatorial Chemistry. 10:204-215.
Murray JK, Sadowsky JD, Scalf M, Smith L.M, Tomita Y, Gellman S.H.  2008.  Exploration of structure - Activity relationships among foldamer ligands for a specific protein binding site via parallel and split-and-mix library synthesis. Journal of Combinatorial Chemistry. 10:204-215.
Schaffer L.V, Shortreed M.R, Cesnik A.J, Frey B.L, Solntsev S.K, Scalf M., Smith L.M.  2018.  Expanding Proteoform Identifications in Top-Down Proteomic Analyses by Constructing Proteoform Families. Analytical Chemistry. 90:1325-1333.
Schaffer L.V, Shortreed M.R, Cesnik A.J, Frey B.L, Solntsev S.K, Scalf M., Smith L.M.  2018.  Expanding Proteoform Identifications in Top-Down Proteomic Analyses by Constructing Proteoform Families. Analytical Chemistry. 90:1325-1333.
Schaffer L.V, Shortreed M.R, Cesnik A.J, Frey B.L, Solntsev S.K, Scalf M., Smith L.M.  2018.  Expanding Proteoform Identifications in Top-Down Proteomic Analyses by Constructing Proteoform Families. Analytical Chemistry. 90:1325-1333.
Schaffer L.V, Shortreed M.R, Cesnik A.J, Frey B.L, Solntsev S.K, Scalf M., Smith L.M.  2018.  Expanding Proteoform Identifications in Top-Down Proteomic Analyses by Constructing Proteoform Families. Analytical Chemistry. 90:1325-1333.
Schaffer L.V, Shortreed M.R, Cesnik A.J, Frey B.L, Solntsev S.K, Scalf M., Smith L.M.  2018.  Expanding Proteoform Identifications in Top-Down Proteomic Analyses by Constructing Proteoform Families. Analytical Chemistry. 90:1325-1333.
Frutos A.G, Smith L.M, Corn R.M.  1998.  Enzymatic ligation reactions of DNA "words" on surfaces for DNA computing. Journal of the American Chemical Society. 120:10277-10282.
Miller R.M, Jordan B., Mehlferber M.M, Jeffery E.D, Chatzipantsiou C., Kaur S., Millikin R.J, Dai Y.X, Tiberi S., Castaldi P.J et al..  2022.  Enhanced protein isoform characterization through long-read proteogenomics. Genome Biology. 23

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