(1) Murakami Katsuhiko S., Masuda, Shoko, Darst, Seth A. “STRUCTURAL BASIS OF TRANSCRIPTION INITIATION: RNA POLYMERASE HOLOENZYME AT 4 Å RESOLUTION” Science (2002) Vol. 296, 5571 Pub Med

(2) Richard L. Gourse, Wilma Ross and Tamas Gaal “UPs and downs in bacterial transcription initiation: the role of the alpha subunit of RNA polymerase in promoter recognition” MicroReview 2000 Volume 37 Issue 4 Page 687 Pub Med

(3) Reznikoff W. Siegele D Cowing D Gross C, “The regulation of transcription inbacteria” Genetics 1995 Pub Med Pub Med

(4) Edwards A, Kane C, Young R, Kornberg R “Two dissociable subunits of yeast RNA polymerase 2 stimaltate the initiation of transcription at a promoter in Vitro” J.Biological Chemistry 1991 296 pp.71-5 Pub Med

(5) Vassylyev D, Sekine S, Laptenko O, Lee J, Vassylyeva M, Borukhov S, Yokoyama S; “Crystal structure of a bacterial RNA polymerase at 2.6 resolution” Nature 2002 417 Pub Med

(6) Busnell D, et al. “Structural basis of transcription: An RNA polymerase 2-Tf2B at 4.5 resolution” Science 2004: 983 Pub Med

(7) Westover et al. “ Structural basis of transcription: Separation of RNA from DNA by polymerase 2.” Science 2004: 1014 Pub Med

(8) Gnatt et al. “Structural basis of transcription: An RNA polymerase 2 elongation complex at 3.3 resolution” Science 2001: 1876 Pub Med

(9) Cramer P. “RNA polymerase 2 structure: from core to functional complexes” Genetics and Development 2004 Pub Med Pub Med

(10) Kettenberger et al. “Complete RNA polymerase 2 elongation complex structure and its interactions with NTP and TF2S.” Mol. Cell 2004: 16 Pub Med

(11) Marshall et al. “Purification of P-TEFb, a transcription required for the transition into productive elongation.” Bio. Chemistry 1995: 279 Pub Med

(12) Westover K, Bushnell D, Kornberg R. “Structural basis of transcription nucleotide selection by rotation in the RNA polymerase 2 active site.” Cell 2004: 119 Pub Med

(13) Busnell D, Cramer P, Kornberg R. “Structural basis of transcription; alpha amanitin-RNA polymerase 2 co-crystal at 2.8 resoultion” PNAS 2002 Pub Med

(14) Bernstein BE, Liu CL, Humphrey EL, Perlstein EO, Schreiber SL “Global nucleosome occupancy in yeast”GENOME BIOLOGY 2004: 5 Pub Med

(15) Liu X, Lee CK, Granek JA, Clarke ND, Lieb JD. “Whole-genome comparison of Leu3 binding in vitro and in vivo reveals the importance of nucleosome occupancy in target site selection.” Genome Res. 2006 Dec;16 (12):1517-28. Pub Med

BIBLIOGRAPHY

COMPARING PROKARYOTIC AND EUKARYOTIC TRANSCRIPTION

EUKARYOTIC TRANSCRIPTION– Detailed look at the process

DEADLY amanitin toxin from the Amanita phalloides mushroom

Contributions from Roger Kornberg's work in Eukaryotic Transcription leading to:

STEM-CELL RESEARCH

ANOTHER BIOLOGICAL CONTRIBUTION

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COMPARING PROKARYOTIC AND EUKARYOTIC TRANSCRIPTION

 

EUKARYOTIC TRANSCRIPTION– Detailed look at the process

 

DEADLY amanitin toxin from the Amanita phalloides mushroom

Contributions from Roger Kornberg's work in Eukaryotic Transcription leading to:

 

STEM-CELL RESEARCH

 

ANOTHER BIOLOGICAL CONTRIBUTION