Chelsea D. Boyd, Ph.D.

2013 Immunology and Microbiology Dartmouth College, Hanover, NH, United States 
Microbiology Biology
"Chelsea Boyd"


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George A. O'Toole grad student 2013 Dartmouth
 (C-di-GMP Mediated Regulation of the LapA Biofilm Adhesin through Proteolysis by the Calcium-Dependent Cysteine Protease LapG.)
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Chatterjee D, Cooley RB, Boyd CD, et al. (2014) Mechanistic insight into the conserved allosteric regulation of periplasmic proteolysis by the signaling molecule cyclic-di-GMP. Elife. 3: e03650
Boyd CD, Smith TJ, El-Kirat-Chatel S, et al. (2014) Structural features of the Pseudomonas fluorescens biofilm adhesin LapA required for LapG-dependent cleavage, biofilm formation, and cell surface localization. Journal of Bacteriology. 196: 2775-88
El-Kirat-Chatel S, Beaussart A, Boyd CD, et al. (2014) Single-cell and single-molecule analysis deciphers the localization, adhesion, and mechanics of the biofilm adhesin LapA Acs Chemical Biology. 9: 485-494
El-Kirat-Chatel S, Boyd CD, O'Toole GA, et al. (2014) Single-molecule analysis of pseudomonas fluorescens footprints Acs Nano. 8: 1690-1698
Ivanov IE, Boyd CD, Newell PD, et al. (2012) Atomic force and super-resolution microscopy support a role for LapA as a cell-surface biofilm adhesin of Pseudomonas fluorescens. Research in Microbiology. 163: 685-91
Boyd CD, O'Toole GA. (2012) Second messenger regulation of biofilm formation: breakthroughs in understanding c-di-GMP effector systems. Annual Review of Cell and Developmental Biology. 28: 439-62
Boyd CD, Chatterjee D, Sondermann H, et al. (2012) LapG, required for modulating biofilm formation by Pseudomonas fluorescens Pf0-1, is a calcium-dependent protease. Journal of Bacteriology. 194: 4406-14
Chatterjee D, Boyd CD, O'Toole GA, et al. (2012) Structural characterization of a conserved, calcium-dependent periplasmic protease from Legionella pneumophila. Journal of Bacteriology. 194: 4415-25
Newell PD, Boyd CD, Sondermann H, et al. (2011) A c-di-GMP effector system controls cell adhesion by inside-out signaling and surface protein cleavage. Plos Biology. 9: e1000587
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