References

1. Baserga, S.J.; Champion, E.A. Chapter 29-RNA Synthesis and Processing. Stryer’s             Biochemistry. 6th edition. 821-853.

 

2. Bushnell, D.A.; Cramer, P.; Kornberg, R. Structural basis of transcription: α-amanitin-            RNA polymerase II cocrystal at 2.8 Angstrom resolution. PNAS. 2002. Vol. 99,             1218-1222.

 

3. Chickarmane, V.; Troein, U. A.; Sauro, H.M.; Peterson, C. Transciptional Dynamic of the Embryonic Stem Cell Switch. Plos Computational Biology. September 2006. Vol. 2, 1080-1092.

 

4. Couzin, J. MicroRNAs Exert Macro Control. ScienceNOW . 2005 Vol. 119.

 

5. Couzin, J. Small Molecule, Big Threat. ScienceNOW Daily News. 2006. Vol. 1114.

 

6. Cramer, P.; Bushnell, D.A.; Kornberg, R. Structural Basis of Transcription: RNA            Polymerase II at 2.8 Angstrom Resolution. Science. 2001. Vol. 292, 1863- 1876.

 

7. Gromak, N.; West, S.; Proudfoot, N.J. Pause Sites Promote Transcription Termination             of Mammalian RNA Polymerase II. Molecular and Cellular Biology. 2006 May;             26. Vol.10, 3986–3996.

8.  Mercoyrol, L.; Job, C.; Job, D. Studies on the inhibition by α-amanitin on single-step              addition reactions and productive RNA synthesis catalysed by wheat-germ RNA             polymerase II. Biochem J. 1989. Vol. 258, 165-169.

9. Novocell Stem cell Engineering. http://www.novocell.com/stem_cells.htm

10. Advanced information on the Nobel Prize in Chemistry 2006, Molecular Basis of Eukaryotic Transcription. Kungl. Vetenskapsakademien. 4, Oct. 2006. http://www.chem.uwec.edu/Chem406_F06/Pages/webtermpaper_media/Nobel_Prize_Advanced_Information.html

11.Opisi gljiva. Amanita phalliodes. http://www.treasurekeepers.org.yu/sr/opisi_gljiva/A/Amanita_phalloides.htm

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