Megan A. Macnaughtan, Ph.D.

Affiliations: 
2003 Purdue University, West Lafayette, IN, United States 
Area:
Analytical Chemistry
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"Megan Macnaughtan"
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M. Daniel Raftery grad student 2003 Purdue
 (Multiple -coil nuclear magnetic resonance probes for high -throughput and difference spectroscopy.)
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Publications

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Shen L, Macnaughtan MA, Frohlich KM, et al. (2015) Multipart Chaperone-effector Recognition in the Type III Secretion System of Chlamydia trachomatis. The Journal of Biological Chemistry
Brady PN, Macnaughtan MA. (2015) Evaluation of colorimetric assays for analyzing reductively methylated proteins: Biases and mechanistic insights. Analytical Biochemistry. 491: 43-51
Fontenot EB, Ditusa SF, Kato N, et al. (2015) Increased phosphate transport of Arabidopsis thaliana Pht1;1 by site-directed mutagenesis of tyrosine 312 may be attributed to the disruption of homomeric interactions. Plant, Cell & Environment
Negulescu H, Guo Y, Garner TP, et al. (2015) A Kazal-type serine protease inhibitor from the defense gland secretion of the subterranean termite Coptotermes formosanus Shiraki Plos One. 10
Roberson KJ, Macnaughtan MA. (2014) Review of methods to assign the nuclear magnetic resonance peaks of reductively methylated proteins. Analytical Biochemistry. 466: 76-82
Ghezal S, Thomasson MS, Lefebvre-Tournier I, et al. (2014) CDP-Ethanolamine and CDP-Choline: One-pot synthesis and 31P NMR study Tetrahedron Letters. 55: 5306-5310
Roberson KJ, Brady PN, Sweeney MM, et al. (2013) Methods to identify the NMR resonances of the ¹³C-dimethyl N-terminal amine on reductively methylated proteins. Journal of Visualized Experiments : Jove. e50875
Goodwin OY, Thomasson MS, Lin AJ, et al. (2013) E. coli sabotages the in vivo production of O-linked β-N-acetylglucosamine-modified proteins. Journal of Biotechnology. 168: 315-23
Thomasson MS, Macnaughtan MA. (2013) Microscopy basics and the study of actin-actin-binding protein interactions. Analytical Biochemistry. 443: 156-65
Schimpl M, Zheng X, Borodkin VS, et al. (2012) O-GlcNAc transferase invokes nucleotide sugar pyrophosphate participation in catalysis. Nature Chemical Biology. 8: 969-74
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