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Journal of the American Chemical Society|March 22, 2021
Allele-Specific RNA Knockdown with a Biologically Stable and Catalytically Efficient XNAzymeKim Nguyen, Yajun Wang, Whitney E England, et al.Expert Opinion on Biological Therapy|July 11, 2008
Creating protein biocatalysts as tools for future industrial applicationsJohn C Chaput, Neal W Woodbury, Linda A Stearns, et al.Nucleosides, Nucleotides & Nucleic Acids|June 21, 2024
An improved synthesis of guanosine TNA phosphoramidite for oligonucleotide synthesisBiju Majumdar, Daisy Sarma, Erica M Lee, et al.Nucleic Acids Research|August 31, 2023
Stability and mechanism of threose nucleic acid toward acid-mediated degradationErica M Lee, Noah A Setterholm, Mohammad Hajjar, et al.Nucleic Acids Research|May 5, 2017
Synthesis and polymerase activity of a fluorescent cytidine TNA triphosphate analogueHui Mei, Changhua Shi, Randi M Jimenez, et al.Journal of the American Chemical Society|July 13, 2019
P(V) Reagents for the Scalable Synthesis of Natural and Modified Nucleoside TriphosphatesJen-Yu Liao, Saikat Bala, Arlene K Ngor, et al.Biopolymers|October 9, 2016
A parallel stranded G-quadruplex composed of threose nucleic acid (TNA)Jen-Yu Liao, Irina Anosova, Saikat Bala, et al.Plos One|October 9, 2009
A man-made ATP-binding protein evolved independent of nature causes abnormal growth in bacterial cellsJoshua M Stomel, James W Wilson, Megan A León, et al.Protein Science : a Publication of the Protein Society|August 3, 2013
A leader sequence capable of enhancing RNA expression and protein synthesis in mammalian cellsBrian P Wellensiek, Andrew C Larsen, Julia Flores, et al.The Journal of Organic Chemistry|February 20, 2016
A Scalable Synthesis of α-L-Threose Nucleic Acid MonomersSujay P Sau, Nour Eddine Fahmi, Jen-Yu Liao, et al.Pageof 14