Isolation of cDNA encoding transcription factor Sp1 and functional analysis of the DNA binding domain JT Kadonaga, KR Carner, FR Masiarz, R Tjian Cell 51 (6), 1079-1090, 1987 | 2066 | 1987 |
Purification and biochemical characterization of the promoter-specific transcription factor, Sp1 MR Briggs, JT Kadonaga, SP Bell, R Tjian Science 234 (4772), 47-52, 1986 | 1815 | 1986 |
The RNA polymerase II core promoter ST Smale, JT Kadonaga Annual review of biochemistry 72 (1), 449-479, 2003 | 1678 | 2003 |
Affinity purification of sequence-specific DNA binding proteins. JT Kadonaga, R Tjian Proceedings of the National Academy of Sciences 83 (16), 5889-5893, 1986 | 1506 | 1986 |
Promoter-specific activation of RNA polymerase II transcription by Sp1 JT Kadonaga, KA Jones, R Tjian Trends in Biochemical Sciences 11 (1), 20-23, 1986 | 1427 | 1986 |
Going the distance: a current view of enhancer action EM Blackwood, JT Kadonaga Science 281 (5373), 60-63, 1998 | 1207 | 1998 |
A cellular DNA-binding protein that activates eukaryotic transcription and DNA replication KA Jones, JT Kadonaga, PJ Rosenfeld, TJ Kelly, R Tjian Cell 48 (1), 79-89, 1987 | 1183 | 1987 |
What's up and down with histone deacetylation and transcription? MJ Pazin, JT Kadonaga Cell 89 (3), 325-328, 1997 | 1149 | 1997 |
Tools for neuroanatomy and neurogenetics in Drosophila BD Pfeiffer, A Jenett, AS Hammonds, TTB Ngo, S Misra, C Murphy, ... Proceedings of the National Academy of Sciences 105 (28), 9715-9720, 2008 | 1012 | 2008 |
The RNA polymerase II core promoter: a key component in the regulation of gene expression JEF Butler, JT Kadonaga Genes & development 16 (20), 2583-2592, 2002 | 956 | 2002 |
Activation of the AIDS retrovirus promoter by the cellular transcription factor, Sp1 KA Jones, JT Kadonaga, PA Luciw, R Tjian Science 232 (4751), 755-759, 1986 | 905 | 1986 |
ACF, an ISWI-containing and ATP-utilizing chromatin assembly and remodeling factor T Ito, M Bulger, MJ Pazin, R Kobayashi, JT Kadonaga Cell 90 (1), 145-155, 1997 | 837 | 1997 |
The downstream core promoter element, DPE, is conserved fromDrosophila to humans and is recognized by TAFII60 of Drosophila TW Burke, JT Kadonaga Genes & development 11 (22), 3020-3031, 1997 | 732 | 1997 |
Eukaryotic transcription: an interlaced network of transcription factors and chromatin-modifying machines JT Kadonaga Cell 92 (3), 307-313, 1998 | 729 | 1998 |
Regulation of gene expression via the core promoter and the basal transcriptional machinery T Juven-Gershon, JT Kadonaga Developmental biology 339 (2), 225-229, 2010 | 706 | 2010 |
The RCAF complex mediates chromatin assembly during DNA replication and repair JK Tyler, CR Adams, SR Chen, R Kobayashi, RT Kamakaka, ... Nature 402 (6761), 555-560, 1999 | 673 | 1999 |
Drosophila TFIID binds to a conserved downstream basal promoter element that is present in many TATA-box-deficient promoters. TW Burke, JT Kadonaga Genes & development 10 (6), 711-724, 1996 | 664 | 1996 |
Regulation of RNA polymerase II transcription by sequence-specific DNA binding factors JT Kadonaga Cell 116 (2), 247-257, 2004 | 590 | 2004 |
The Downstream Promoter Element DPE Appears To Be as Widely Used as the TATA Box in Drosophila Core Promoters AK Kutach, JT Kadonaga Molecular and cellular biology 20 (13), 4754-4764, 2000 | 533 | 2000 |
The RNA polymerase II core promoter—the gateway to transcription T Juven-Gershon, JY Hsu, JWM Theisen, JT Kadonaga Current opinion in cell biology 20 (3), 253-259, 2008 | 522 | 2008 |