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Biorxiv : the Preprint Server for Biology|December 9, 2024
Visualization of a multi-turnover Cas9 after product releaseKaitlyn A Kiernan, David W TaylorNature Communications|July 2, 2025
Visualization of a multi-turnover Cas9 after product releaseKaitlyn A Kiernan, David W TaylorMsphere|July 28, 2021
Proteus mirabilis Employs a Contact-Dependent Killing System against Competing EnterobacteriaceaeDara Kiani, William Santus, Kaitlyn A Kiernan, et al.Nucleic Acids Research|December 10, 2024
Structural basis of Cas9 DNA interrogation with a 5' truncated sgRNAKaitlyn A Kiernan, Jieun Kwon, Bradley J Merrill, et al.Nucleic Acids Research|March 17, 2023
Structural basis for the tRNA-dependent activation of the terminal complex of selenocysteine synthesis in humansAnupama K Puppala, Jennifer Castillo Suchkou, Rachel L French, et al.Nucleic Acids Research|October 10, 2024
Human selenocysteine synthase, SEPSECS, has evolved to optimize binding of a tRNA-based substrateAnupama K Puppala, Dylan Sosa, Jennifer Castillo Suchkou, et al.American Journal of Botany|April 2, 2014
Key plants preserve elements of culture: a study over distance and time of fresh crops in Puerto Rican markets in Hartford, Connecticut, "A moveable feast"David W Taylor, Gregory J AndersonBiorxiv : the Preprint Server for Biology|February 24, 2025
Structural basis for a dual-function type II-B CRISPR-Cas9Grace N Hibshman, David W TaylorNucleic Acids Research|July 4, 2025
Structural basis of a dual-function type II-B CRISPR-Cas9Grace N Hibshman, David W TaylorPageof 11