Adam Frankel
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PRMT1 is the predominant type I protein arginine methyltransferase in mammalian cells
J Tang, A Frankel, RJ Cook, S Kim, WK Paik, KR Williams, S Clarke, ...
Journal of Biological Chemistry 275 (11), 7723-7730, 2000
PRMT5 (Janus kinase-binding protein 1) catalyzes the formation of symmetric dimethylarginine residues in proteins
TL Branscombe, A Frankel, JH Lee, JR Cook, Z Yang, S Pestka, S Clarke
Journal of Biological Chemistry 276 (35), 32971-32976, 2001
The novel human protein arginine N-methyltransferase PRMT6 is a nuclear enzyme displaying unique substrate specificity
A Frankel, N Yadav, J Lee, TL Branscombe, S Clarke, MT Bedford
Journal of Biological Chemistry 277 (5), 3537-3543, 2002
Arginine methylation inhibits the binding of proline-rich ligands to Src homology 3, but not WW, domains
MT Bedford, A Frankel, MB Yaffe, S Clarke, P Leder, S Richard
Journal of Biological Chemistry 275 (21), 16030-16036, 2000
PRMT7 is a member of the protein arginine methyltransferase family with a distinct substrate specificity
TB Miranda, M Miranda, A Frankel, S Clarke
Journal of Biological Chemistry 279 (22), 22902-22907, 2004
Encodamers: unnatural peptide oligomers encoded in RNA
A Frankel, SW Millward, RW Roberts
Chemistry & biology 10 (11), 1043-1050, 2003
DAL-1/4.1 B tumor suppressor interacts with protein arginine N-methyltransferase 3 (PRMT3) and inhibits its ability to methylate substrates in vitro and in vivo
V Singh, TB Miranda, W Jiang, A Frankel, ME Roemer, VA Robb, ...
Oncogene 23 (47), 7761-7771, 2004
PRMT3 is a Distinct Member of the Protein Arginine N-Methyltransferase Family Conferral of Substrate Specificity by a Zinc-Finger Domain
A Frankel, S Clarke
Journal of Biological Chemistry 275 (42), 32974-32982, 2000
Kinetic analysis of human protein arginine N-methyltransferase 2: formation of monomethyl-and asymmetric dimethyl-arginine residues on histone H4
TM Lakowski, A Frankel
Biochemical Journal 421 (2), 253-261, 2009
Yeast and rat Coq3 and Escherichia coli UbiG polypeptides catalyze both O-methyltransferase steps in coenzyme Q biosynthesis
WW Poon, RJ Barkovich, AY Hsu, A Frankel, PT Lee, JN Shepherd, ...
Journal of Biological Chemistry 274 (31), 21665-21672, 1999
A kinetic study of human protein arginine N-methyltransferase 6 reveals a distributive mechanism
TM Lakowski, A Frankel
Journal of Biological Chemistry 283 (15), 10015-10025, 2008
Molecular basis for class Ib anti-arrhythmic inhibition of cardiac sodium channels
SA Pless, JD Galpin, A Frankel, CA Ahern
Nature communications 2 (1), 1-9, 2011
Unnatural RNA display libraries
A Frankel, S Li, SR Starck, RW Roberts
Current opinion in structural biology 13 (4), 506-512, 2003
RNase treatment of yeast and mammalian cell extracts affects in vitro substrate methylation by type I protein arginine N-methyltransferases
A Frankel, S Clarke
Biochemical and biophysical research communications 259 (2), 391-400, 1999
The RNA–protein complex: Direct probing of the interfacial recognition dynamics and its correlation with biological functions
T Xia, HC Becker, C Wan, A Frankel, RW Roberts, AH Zewail
Proceedings of the National Academy of Sciences 100 (14), 8119-8123, 2003
A Protein Arginine N-Methyltransferase 1 (PRMT1) and 2 Heteromeric Interaction Increases PRMT1 Enzymatic Activity
ML Pak, TM Lakowski, D Thomas, MI Vhuiyan, K Hüsecken, A Frankel
Biochemistry 50 (38), 8226-8240, 2011
In vitro selection for sense codon suppression
Rna 9 (7), 780-786, 2003
Yeast Hsl7 (histone synthetic lethal 7) catalyses the in vitro formation of ω-NG-monomethylarginine in calf thymus histone H2A
TB Miranda, J Sayegh, A Frankel, JE Katz, M Miranda, S Clarke
Biochemical Journal 395 (3), 563-570, 2006
Nη-Substituted Arginyl Peptide Inhibitors of Protein Arginine N-Methyltransferases
TM Lakowski, P ’t Hart, CA Ahern, NI Martin, A Frankel
ACS chemical biology 5 (11), 1053-1063, 2010
Context and conformation dictate function of a transcription antitermination switch
T Xia, A Frankel, TT Takahashi, J Ren, RW Roberts
Nature Structural & Molecular Biology 10 (10), 812-819, 2003
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