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Ishwar Radhakrishnan
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Solution structure of the KIX domain of CBP bound to the transactivation domain of CREB: a model for activator: coactivator interactions
I Radhakrishnan, GC Pérez-Alvarado, D Parker, HJ Dyson, MR Montminy, ...
Cell 91 (6), 741-752, 1997
9181997
Solution structure of a CUE-ubiquitin complex reveals a conserved mode of ubiquitin binding
RS Kang, CM Daniels, SA Francis, SC Shih, WJ Salerno, L Hicke, ...
Cell 113 (5), 621-630, 2003
3092003
DNA triplexes: solution structures, hydration sites, energetics, interactions, and function
I Radhakrishnan, DJ Patel
Biochemistry 33 (38), 11405-11416, 1994
2701994
Solution structure of Vps27 UIM–ubiquitin complex important for endosomal sorting and receptor downregulation
KA Swanson, RS Kang, SD Stamenova, L Hicke, I Radhakrishnan
The EMBO journal, 2003
2432003
Analysis of an activator: coactivator complex reveals an essential role for secondary structure in transcriptional activation
D Parker, US Jhala, I Radhakrishnan, MB Yaffe, C Reyes, AI Shulman, ...
Molecular cell 2 (3), 353-359, 1998
2011998
Conformational preferences in the Ser133‐phosphorylated and non‐phosphorylated forms of the kinase inducible transactivation domain of CREB
I Radhakrishnan, GC Pérez-Alvarado, HJ Dyson, PE Wright
FEBS letters 430 (3), 317-322, 1998
1811998
Domain packing and dynamics in the DNA complex of the N-terminal zinc fingers of TFIIIA.
MP Foster, DS Wuttke, I Radhakrishnan, DA Case, JM Gottesfeld, ...
Nature structural biology 4 (8), 605-608, 1997
1741997
Role of secondary structure in discrimination between constitutive and inducible activators
D Parker, M Rivera, T Zor, A Henrion-Caude, I Radhakrishnan, A Kumar, ...
Molecular and cellular biology, 1999
1651999
Solution structure of a purine· purine· pyrimidine DNA triplex containing G· GC and T· AT triples
I Radhakrishnan, DJ Patel
Structure 1 (2), 135-152, 1993
1631993
A threaded loop conformation adopted by a family of peptoid nonamers
K Huang, CW Wu, TJ Sanborn, JA Patch, K Kirshenbaum, ...
Journal of the American Chemical Society 128 (5), 1733-1738, 2006
1572006
Solution structure of a pyrimidine· purine· pyrimidine DNA triplex containing T· AT, C+· GC and G· TA triples
I Radhakrishnan, DJ Patel
Structure 2 (1), 17-32, 1994
1541994
Chemical shift as a probe of molecular interfaces: NMR studies of DNA binding by the three amino-terminal zinc finger domains from transcription factor IIIA
MP Foster, DS Wuttke, KR Clemens, W Jahnke, I Radhakrishnan, ...
Journal of biomolecular NMR 12, 51-71, 1998
1501998
A role for WDR5 in integrating threonine 11 phosphorylation to lysine 4 methylation on histone H3 during androgen signaling and in prostate cancer
JY Kim, T Banerjee, A Vinckevicius, Q Luo, JB Parker, MR Baker, ...
Molecular cell 54 (4), 613-625, 2014
1302014
Solution structure of the interacting domains of the Mad–Sin3 complex: implications for recruitment of a chromatin-modifying complex
K Brubaker, SM Cowley, K Huang, L Loo, GS Yochum, DE Ayer, ...
Cell 103 (4), 655-665, 2000
1192000
Nuclear magnetic resonance structural studies of intramolecular purine· purine· pyrimidine DNA triplexes in solution: Base triple pairing alignments and strand direction
I Radhakrishnan, C de los Santos, DJ Patel
Journal of molecular biology 221 (4), 1403-1418, 1991
1131991
NMR structural studies of intramolecular (Y+) n. Cntdot.(R+) n (Y-) n DNA triplexes in solution: imino and amino proton and nitrogen markers of G. Cntdot. AT base triple formation
I Radhakrishnan, X Gao, C De los Santos, D Live, DJ Patel
Biochemistry 30 (37), 9022-9030, 1991
1091991
Solution Structure and Hydration Patterns of a Pyrimidine? Purine? Pyrimidine DNA Triplex Containing a Novel T? CG Base-triple
I Radhakrishnan, DJ Patel
Journal of molecular biology 241 (4), 600-619, 1994
1071994
Mechanism of CREB recognition and coactivation by the CREB-regulated transcriptional coactivator CRTC2
Q Luo, K Viste, JC Urday-Zaa, G Senthil Kumar, WW Tsai, A Talai, ...
Proceedings of the National Academy of Sciences 109 (51), 20865-20870, 2012
1062012
Structural analyses of CREB-CBP transcriptional activator-coactivator complexes by NMR spectroscopy: implications for mapping the boundaries of structural domains
I Radhakrishnan, GC Pérez-Alvarado, D Parker, HJ Dyson, MR Montminy, ...
Journal of molecular biology 287 (5), 859-865, 1999
931999
HBP1 and Mad1 repressors bind the Sin3 corepressor PAH2 domain with opposite helical orientations
KA Swanson, PS Knoepfler, K Huang, RS Kang, SM Cowley, CD Laherty, ...
Nature structural & molecular biology 11 (8), 738-746, 2004
842004
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