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Christopher D Vanderwal

Showing results (81-90 of 92) with videos related to

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Plant Communications|February 20, 2025
Three cytochrome P450 enzymes consecutively catalyze the biosynthesis of furanoclerodane precursors in Salvia speciesRuoxi Lin, Haixiu Li, Yiren Xiao, et al.
Biochemistry|August 24, 2005
Cyclostreptin (FR182877), an antitumor tubulin-polymerizing agent deficient in enhancing tubulin assembly despite its high affinity for the taxoid siteMichael C Edler, Rubén M Buey, Rick Gussio, et al.
Biochemistry|December 14, 2011
Cyclostreptin derivatives specifically target cellular tubulin and further map the paclitaxel siteEnrique Calvo, Isabel Barasoain, Ruth Matesanz, et al.
Journal of the American Chemical Society|December 24, 2015
Site-Selective Aliphatic C-H Chlorination Using N-Chloroamides Enables a Synthesis of ChlorolissoclimideRyan K Quinn, Zef A Könst, Sharon E Michalak, et al.
Journal of the American Chemical Society|April 6, 2018
An Oxetane-Based Polyketide Surrogate To Probe Substrate Binding in a Polyketide SynthaseBryan D Ellis, Jacob C Milligan, Alexander R White, et al.
ACS Chemical Biology|March 22, 2025
Synthesis of Differentially Halogenated Lissoclimide Analogues To Probe Ribosome E-Site BindingSalvatore Terrosu, Liliia Nurullina, Nantamon Supantanapong, et al.
Journal of the American Chemical Society|October 16, 2024
A Divergent Synthesis of Numerous Pyrroloiminoquinone Alkaloids Identifies Promising Antiprotozoal AgentsGriffin L Barnes, Nicholas L Magann, Daniele Perrotta, et al.
Nature Chemical Biology|January 9, 2007
Cyclostreptin binds covalently to microtubule pores and lumenal taxoid binding sitesRubén M Buey, Enrique Calvo, Isabel Barasoain, et al.
Nature Chemistry|October 25, 2017
Synthesis facilitates an understanding of the structural basis for translation inhibition by the lissoclimidesZef A Könst, Anne R Szklarski, Simone Pellegrino, et al.
The Journal of Organic Chemistry|November 11, 2017
Catalyst-Controlled Stereoselective Synthesis Secures the Structure of the Antimalarial Isocyanoterpene Pustulosaisonitrile-1Andrew M White, Kathy Dao, Darius Vrubliauskas, et al.
Pageof 10

Showing results (81-90 of 92) with videos related to

Sort By:
Pageof 10
Plant Communications|February 20, 2025
Three cytochrome P450 enzymes consecutively catalyze the biosynthesis of furanoclerodane precursors in Salvia speciesRuoxi Lin, Haixiu Li, Yiren Xiao, et al.
Biochemistry|August 24, 2005
Cyclostreptin (FR182877), an antitumor tubulin-polymerizing agent deficient in enhancing tubulin assembly despite its high affinity for the taxoid siteMichael C Edler, Rubén M Buey, Rick Gussio, et al.
Biochemistry|December 14, 2011
Cyclostreptin derivatives specifically target cellular tubulin and further map the paclitaxel siteEnrique Calvo, Isabel Barasoain, Ruth Matesanz, et al.
Journal of the American Chemical Society|December 24, 2015
Site-Selective Aliphatic C-H Chlorination Using N-Chloroamides Enables a Synthesis of ChlorolissoclimideRyan K Quinn, Zef A Könst, Sharon E Michalak, et al.
Journal of the American Chemical Society|April 6, 2018
An Oxetane-Based Polyketide Surrogate To Probe Substrate Binding in a Polyketide SynthaseBryan D Ellis, Jacob C Milligan, Alexander R White, et al.
ACS Chemical Biology|March 22, 2025
Synthesis of Differentially Halogenated Lissoclimide Analogues To Probe Ribosome E-Site BindingSalvatore Terrosu, Liliia Nurullina, Nantamon Supantanapong, et al.
Journal of the American Chemical Society|October 16, 2024
A Divergent Synthesis of Numerous Pyrroloiminoquinone Alkaloids Identifies Promising Antiprotozoal AgentsGriffin L Barnes, Nicholas L Magann, Daniele Perrotta, et al.
Nature Chemical Biology|January 9, 2007
Cyclostreptin binds covalently to microtubule pores and lumenal taxoid binding sitesRubén M Buey, Enrique Calvo, Isabel Barasoain, et al.
Nature Chemistry|October 25, 2017
Synthesis facilitates an understanding of the structural basis for translation inhibition by the lissoclimidesZef A Könst, Anne R Szklarski, Simone Pellegrino, et al.
The Journal of Organic Chemistry|November 11, 2017
Catalyst-Controlled Stereoselective Synthesis Secures the Structure of the Antimalarial Isocyanoterpene Pustulosaisonitrile-1Andrew M White, Kathy Dao, Darius Vrubliauskas, et al.
Pageof 10