Christopher M. Shuford, Ph.D.

Affiliations: 
Chemistry North Carolina State University, Raleigh, NC 
Area:
Mass Spectrometry
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"Christopher Shuford"
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David Muddiman grad student 2012 NCSU
 (Absolute Quantification of Proteins and Metabolites by Mass Spectrometry: Fundamental and Novel Applications towards Development of a Systems-Level Assay for Lignin Biosynthesis.)
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Publications

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Shuford CM, Grant RP. (2023) Cheaper, faster, simpler trypsin digestion for high-throughput targeted protein quantification. Journal of Mass Spectrometry and Advances in the Clinical Lab. 30: 74-82
Shuford CM, Johnson JS, Thompson JW, et al. (2020) More sensitivity is always better: Measuring sub-clinical levels of serum thyroglobulin on a µLC–MS/MS system Clinical Mass Spectrometry. 15: 29-35
Wang JP, Matthews ML, Williams CM, et al. (2018) Improving wood properties for wood utilization through multi-omics integration in lignin biosynthesis. Nature Communications. 9: 1579
Shuford CM, Walters JJ, Holland PM, et al. (2017) Absolute Protein Quantification by Mass Spectrometry: Not as Simple as Advertised. Analytical Chemistry
Chen HC, Song J, Wang JP, et al. (2014) Systems biology of lignin biosynthesis in Populus trichocarpa: heteromeric 4-coumaric acid:coenzyme A ligase protein complex formation, regulation, and numerical modeling. The Plant Cell. 26: 876-93
Wang JP, Naik PP, Chen HC, et al. (2014) Complete proteomic-based enzyme reaction and inhibition kinetics reveal how monolignol biosynthetic enzyme families affect metabolic flux and lignin in Populus trichocarpa. The Plant Cell. 26: 894-914
Shi R, Shuford CM, Wang JP, et al. (2013) Regulation of phenylalanine ammonia-lyase (PAL) gene family in wood forming tissue of Populus trichocarpa. Planta. 238: 487-97
Chen HC, Song J, Williams CM, et al. (2013) Monolignol pathway 4-coumaric acid:coenzyme A ligases in Populus trichocarpa: novel specificity, metabolic regulation, and simulation of coenzyme A ligation fluxes. Plant Physiology. 161: 1501-16
Wang JP, Shuford CM, Li Q, et al. (2012) Functional redundancy of the two 5-hydroxylases in monolignol biosynthesis of Populus trichocarpa: LC-MS/MS based protein quantification and metabolic flux analysis. Planta. 236: 795-808
Shuford CM, Sederoff RR, Chiang VL, et al. (2012) Peptide production and decay rates affect the quantitative accuracy of protein cleavage isotope dilution mass spectrometry (PC-IDMS). Molecular & Cellular Proteomics : McP. 11: 814-23
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