Publications
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Improved Protein Inference from Multiple Protease Bottom-Up Mass Spectrometry Data. Journal of Proteome Research. 18(9)
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2019. Improved Protein Inference from Multiple Protease Bottom-Up Mass Spectrometry Data. Journal of Proteome Research. 18(9)
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2019. Improved Protein Inference from Multiple Protease Bottom-Up Mass Spectrometry Data. Journal of Proteome Research. 18(9)
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2019. Intact-Mass Analysis Facilitating the Identification of Large Human Heart Proteoforms. Analytical Chemistry. 91(17)
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2019. Intact-Mass Analysis Facilitating the Identification of Large Human Heart Proteoforms. Analytical Chemistry. 91(17)
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2019. Intact-Mass Analysis Facilitating the Identification of Large Human Heart Proteoforms. Analytical Chemistry. 91(17)
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2019. Proteomic analysis of affinity-purified 26S proteasomes identifies a suite of assembly chaperones in Arabidopsis. Journal of Biological Chemistry. 294:17570-17592.
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2019. Proteomic analysis of affinity-purified 26S proteasomes identifies a suite of assembly chaperones in Arabidopsis. Journal of Biological Chemistry. 294:17570-17592.
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2019. An Algorithm to Improve the Speed of Semi and Non-specific Enzyme Searches in Proteomics. Current Bioinformatics. 15:1065-1074.
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2020. A Bayesian Null Interval Hypothesis Test Controls False Discovery Rates and Improves Sensitivity in Label-Free Quantitative Proteomics. Journal of Proteome Research. 19:1975-1981.
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2020. A Bayesian Null Interval Hypothesis Test Controls False Discovery Rates and Improves Sensitivity in Label-Free Quantitative Proteomics. Journal of Proteome Research. 19:1975-1981.
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2020. A Bayesian Null Interval Hypothesis Test Controls False Discovery Rates and Improves Sensitivity in Label-Free Quantitative Proteomics. Journal of Proteome Research. 19:1975-1981.
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2020. Improving Proteoform Identifications in Complex Systems Through Integration of Bottom-Up and Top-Down Data. Journal of Proteome Research. 19:3510-3517.
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2020. Improving Proteoform Identifications in Complex Systems Through Integration of Bottom-Up and Top-Down Data. Journal of Proteome Research. 19:3510-3517.
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2020. Improving Proteoform Identifications in Complex Systems Through Integration of Bottom-Up and Top-Down Data. Journal of Proteome Research. 19:3510-3517.
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2020. Improving Proteoform Identifications in Complex Systems Through Integration of Bottom-Up and Top-Down Data. Journal of Proteome Research. 19:3510-3517.
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2020. O-Pair Search with MetaMorpheus for O-glycopeptide characterization. Nature Methods. 17:1133-+.
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2020. O-Pair Search with MetaMorpheus for O-glycopeptide characterization. Nature Methods. 17:1133-+.
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2020. Advanced Strategies for Proton-Transfer Reactions Coupled with Parallel Ion Parking on a 21 T FT-ICR MS for Intact Protein Analysis. Analytical Chemistry. 93:9119-9128.
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2021. Advanced Strategies for Proton-Transfer Reactions Coupled with Parallel Ion Parking on a 21 T FT-ICR MS for Intact Protein Analysis. Analytical Chemistry. 93:9119-9128.
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2021. Advanced Strategies for Proton-Transfer Reactions Coupled with Parallel Ion Parking on a 21 T FT-ICR MS for Intact Protein Analysis. Analytical Chemistry. 93:9119-9128.
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2021. Advanced Strategies for Proton-Transfer Reactions Coupled with Parallel Ion Parking on a 21 T FT-ICR MS for Intact Protein Analysis. Analytical Chemistry. 93:9119-9128.
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2021. An atlas of protein turnover rates in mouse tissues. Nature Communications. 12
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2021. An atlas of protein turnover rates in mouse tissues. Nature Communications. 12
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2021. Automated Assignment of Proteoform Classification Levels. Journal of Proteome Research. 20:4101-4105.
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2021.