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Bioorganic & Medicinal Chemistry|November 28, 2017
TLR8 activation and inhibition by guanosine analogs in RNA: Importance of functional groups and chain lengthTiannan Hu, Scott R Suter, Madeline M Mumbleau, et al.Nucleic Acids Research|August 14, 2012
Nucleoside analog studies indicate mechanistic differences between RNA-editing adenosine deaminasesRena A Mizrahi, Kelly J Phelps, Andrea Y Ching, et al.Bioorganic & Medicinal Chemistry|December 8, 2020
Ester modification at the 3' end of anti-microRNA oligonucleotides increases potency of microRNA inhibitionKevin M Pham, Scott R Suter, Shannon S Lu, et al.ACS Chemical Biology|September 26, 2013
Computational approaches to predicting the impact of novel bases on RNA structure and stabilityJason G Harrison, Yvonne B Zheng, Peter A Beal, et al.Journal of the American Chemical Society|October 4, 2012
Promiscuous 8-alkoxyadenosines in the guide strand of an siRNA: modulation of silencing efficacy and off-pathway protein bindingUday Ghanty, Erik Fostvedt, Rachel Valenzuela, et al.Bioorganic & Medicinal Chemistry|April 7, 2024
RNA sequences that direct selective ADAR editing from a SELEX library bearing 8-azanebularineBailey L Wong, Herra G Mendoza, Casey S Jacobsen, et al.Biochemistry|January 8, 2024
Impact of Disease-Associated Mutations on the Deaminase Activity of ADAR1Agya Karki, Kristen B Campbell, Sukanya Mozumder, et al.Nucleic Acids Research|September 20, 2006
Controlling activation of the RNA-dependent protein kinase by siRNAs using site-specific chemical modificationSujiet Puthenveetil, Landon Whitby, Jin Ren, et al.Cell|February 3, 2015
On-enzyme refolding permits small RNA and tRNA surveillance by the CCA-adding enzymeClaus-D Kuhn, Jeremy E Wilusz, Yuxuan Zheng, et al.Biochemistry|March 27, 2023
Selective Inhibition of ADAR1 Using 8-Azanebularine-Modified RNA DuplexesHerra G Mendoza, Victorio Jauregui Matos, SeHee Park, et al.Pageof 10