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Eukaryotic transcription

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Revision as of 01:07, 5 October 2006 by wikademia>JWSchmidt (new image)
Figure 2. Eukaryotic RNA polymerase II in a complex with DNA and mRNA [1].

The Nobel Prize in Chemistry in 2006 was awarded to Roger D. Kornberg for his work on the molecular basis of eukaryotic transcription [2].

Transcription

File:Information flow.png
Figure 1. Information flow in living cells from DNA to RNA to protein.

Eukaryotic organisms such as humans store their genetic information in the structure of DNA molecules. Most of the genetic instructions in genes are used to specify the structures of proteins (Figure 1). The many proteins of cells function as molecular machines that produce the living state. Intermediate between DNA and protein is RNA. The process by which cells convert the structure of a gene into the structure of a mRNA molecule is called transcription. In eukaryotes, a large molecular complex of specialized proteins is required to achieve the careful control of which subset of genes is transcribed in each type of cell. At the core of this complex is the enzyme RNA polymerase II.

Roger Kornberg's laboratory has used biochemical techniques to isolate the large complex of proteins that allow RNA polymerase II to produce messenger RNA. Working with yeast cells as an experimental system, Kornberg's research team has isolated and purified the functioning RNA pol II protein complex with attached template DNA, product mRNA and substrate nucleotides and captured images of the complex using electron microscopy and X-ray crystallography [3] (see Figure 2)

Figure 3. A phylogenetic tree of living things, based on rRNA sequence data, showing the separation of bacteria, archaea, and eukaryotes.

General transcription factors

There are three major forms of life on Earth, bacteria, archaea and eukaryotes (Figure 3). RNA polymerase in bacteria is less complex than RNA polymerase in eukaryotes. Some of the increased complexity of RNA polymerase in eukaryotes reflects differences between DNA in eukaryotes and DNA in bacteria. Two important differences are that eukaryotes organize their DNA into nucleosomes and have more complex mechanisms for regulation of gene transcription.

References

  1. ↑ Structural basis of transcription: an RNA polymerase II elongation complex at 3.3 A resolution by Averell L. Gnatt, Patrick Cramer, Jianhua Fu, David A. Bushnell and Roger D. Kornberg in Science (2001) Volume 292, pages 1876-1882.
  2. ↑ 2006 award at the Nobel Prize website.
  3. ↑ Advanced information on the Nobel Prize in Chemistry 2006: Molecular basis of eukaryotic transcription by Lars Thelander.

See also