Christopher R. Vickery

Affiliations: 
Harvard Medical School, Boston, MA, United States 
Area:
Chemical biology, Biochemistry, Microbiology, Structural Biology
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Parents

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Herman O. Sintim research assistant
Michael D. Burkart grad student
Joseph P. Noel grad student
Suzanne Walker post-doc
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Publications

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Kasprzyk PG, Vickery C, Ye M, et al. (2022) Safety of a Sustainably Produced, Bioengineered, Nature-Identical Salidroside Compound. Nutrients. 14
Hesser AR, Matano LM, Vickery CR, et al. (2020) The length of lipoteichoic acid polymers controls cell size and envelope integrity. Journal of Bacteriology
Vickery CR, McCulloch IP, Sonnenschein EC, et al. (2019) Dissecting modular synthases through inhibition: A complementary chemical and genetic approach. Bioorganic & Medicinal Chemistry Letters. 126820
Matos ÂP, Kauffman A, Vickery C, et al. (2019) Synthetic Biology Category Wins the 350th Anniversary Merck Innovation Cup. Trends in Biotechnology
Wood BM, Santa-Maria JP, Matano LM, et al. (2018) A partial reconstitution implicates DltD in catalyzing lipoteichoic acid D-alanylation. The Journal of Biological Chemistry
Vickery CR, Cardenas J, Bowman M, et al. (2018) A coupled in vitro/in vivo approach for engineering a heterologous Type III PKS to enhance polyketide biosynthesis in Saccharomyces cerevisiae. Biotechnology and Bioengineering
Vickery CR, Wood BM, Morris HG, et al. (2018) Reconstitution of S. aureus lipoteichoic acid synthase activity identifies Congo red as a selective inhibitor. Journal of the American Chemical Society
Koo HJ, Vickery CR, Xu Y, et al. (2016) Biosynthetic potential of sesquiterpene synthases: product profiles of Egyptian Henbane premnaspirodiene synthase and related mutants. The Journal of Antibiotics
Vickery CR, La Clair JJ, Burkart MD, et al. (2016) Harvesting the biosynthetic machineries that cultivate a variety of indispensable plant natural products. Current Opinion in Chemical Biology. 31: 66-73
Vickery CR, Kosa NM, Casavant EP, et al. (2014) Structure, biochemistry, and inhibition of essential 4'-phosphopantetheinyl transferases from two species of Mycobacteria. Acs Chemical Biology. 9: 1939-44
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