Theresa42
Well-known member
This is not directly related to H5N1, but I thought it was interesting on a theoretical level given that influenza is an RNA-virus, etc., etc.
Gene machinery allows a little self-editing
Posted 7/30/2006
(...)
An explanation for how RNA might take such a leading role inside cells, one that points to where today's life originated to boot, comes this week in the journal, Science. A team led by Nikolay Zenkin of the Waksman Institute in Piscataway, N.J., reports that when DNA is read by a messenger RNA molecule, botched transcriptions of the genes trigger a reaction that "proofreads most of the misincorporation events," and evicts the botched gene off the messenger RNA molecule. How the Rube Goldberg machinery of genes actually works, transferring their message from DNA to messenger RNA and finally to proteins, with the help of other RNA varieties, may be explained by this self-editing.
Zenkin and colleagues discovered the proofreading effect by dumping bacterial RNA into batches of specially prepared synthetic DNA and RNA dosed to contain botched bacterial genes. Experiments showed the botched genes would readily "participate in their own excision," once written to the bacterial RNA, according to the study.
"The discovery of self-correcting RNA transcripts suggests a previously missing link in molecular evolution," says biologist Patrick Cramer of Germany's Ludwig-Maximilians-Universität München, in a commentary accompanying the study. Scientists had supposed the earliest microbial forms of life found perhaps 3.8 billion years ago on Earth must have had genes carried on RNA, a so-called "RNA world," but how these RNA snippets would assemble into a full-fledged genome for each creature seemed unclear. However, self-editing RNA makes large RNA genomes suddenly seem more inevitable for creatures living in an RNA world, Cramer says.
(...)
http://www.usatoday.com/tech/science/columnist/vergano/2006-07-30-rna-editing_x.htm
Also...
Something for You RNA World Enthusiasts
August 8, 2006
There is a paper in last week's Science that describes a proofreading mechanism in prokaryotic (i.e. bacterial) RNA Polymerase, the enzyme responsible for transcribing DNA into RNA. When RNA Pol incorporates the wrong base into a growing RNA, the enzyme moves two steps back and cleaves the dinucleotide fragment (the mismatched DNA-RNA base pair plus the preceding pair DNA-RNA pair).
So far that's OK. RNA Pol can correct mistakes and thus can transcribe with increased fidelity etc. But the cool part is that the data from this paper supports a model where the mismatched nucleotide participates in the RNA cleavage reaction. So the active site of RNA polymerase's proofreading activity ... is RNA!
(...)
http://scienceblogs.com/transcript/2006/08/something_for_you_rna_world_en.php
And, the research article in Science...
Transcript-Assisted Transcriptional Proofreading
Nikolay Zenkin,1* Yulia Yuzenkova,1 Konstantin Severinov1,2,3*
Fidelity of template-dependent nucleic acid synthesis is the main determinant of stable heredity and error-free gene expression. The mechanism (or mechanisms) ensuring fidelity of transcription by DNA-dependent RNA polymerases (RNAPs) is not fully understood. Here, we show that the 3' end–proximal nucleotide of the nascent transcript stimulates hydrolysis of the penultimate phosphodiester bond by providing active groups and coordination bonds to the RNAP active center. This stimulation is much higher in the case of misincorporated nucleotide. We show that during transcription elongation, the hydrolytic reaction stimulated by misincorporated nucleotides proofreads most of the misincorporation events and thus serves as an intrinsic mechanism of transcription fidelity.
http://www.sciencemag.org/cgi/content/abstract/sci;313/5786/518
Self-Correcting Messages
Patrick Cramer
Mistakes can occur as RNA polymerase copies DNA into transcripts. A proofreading mechanism that removes the incorrect RNA is triggered by the erroneous RNA itself.
http://www.sciencemag.org/cgi/content/summary/sci;313/5786/447
Gene machinery allows a little self-editing
Posted 7/30/2006
(...)
An explanation for how RNA might take such a leading role inside cells, one that points to where today's life originated to boot, comes this week in the journal, Science. A team led by Nikolay Zenkin of the Waksman Institute in Piscataway, N.J., reports that when DNA is read by a messenger RNA molecule, botched transcriptions of the genes trigger a reaction that "proofreads most of the misincorporation events," and evicts the botched gene off the messenger RNA molecule. How the Rube Goldberg machinery of genes actually works, transferring their message from DNA to messenger RNA and finally to proteins, with the help of other RNA varieties, may be explained by this self-editing.
Zenkin and colleagues discovered the proofreading effect by dumping bacterial RNA into batches of specially prepared synthetic DNA and RNA dosed to contain botched bacterial genes. Experiments showed the botched genes would readily "participate in their own excision," once written to the bacterial RNA, according to the study.
"The discovery of self-correcting RNA transcripts suggests a previously missing link in molecular evolution," says biologist Patrick Cramer of Germany's Ludwig-Maximilians-Universität München, in a commentary accompanying the study. Scientists had supposed the earliest microbial forms of life found perhaps 3.8 billion years ago on Earth must have had genes carried on RNA, a so-called "RNA world," but how these RNA snippets would assemble into a full-fledged genome for each creature seemed unclear. However, self-editing RNA makes large RNA genomes suddenly seem more inevitable for creatures living in an RNA world, Cramer says.
(...)
http://www.usatoday.com/tech/science/columnist/vergano/2006-07-30-rna-editing_x.htm
Also...
Something for You RNA World Enthusiasts
August 8, 2006
There is a paper in last week's Science that describes a proofreading mechanism in prokaryotic (i.e. bacterial) RNA Polymerase, the enzyme responsible for transcribing DNA into RNA. When RNA Pol incorporates the wrong base into a growing RNA, the enzyme moves two steps back and cleaves the dinucleotide fragment (the mismatched DNA-RNA base pair plus the preceding pair DNA-RNA pair).
So far that's OK. RNA Pol can correct mistakes and thus can transcribe with increased fidelity etc. But the cool part is that the data from this paper supports a model where the mismatched nucleotide participates in the RNA cleavage reaction. So the active site of RNA polymerase's proofreading activity ... is RNA!
(...)
http://scienceblogs.com/transcript/2006/08/something_for_you_rna_world_en.php
And, the research article in Science...
Transcript-Assisted Transcriptional Proofreading
Nikolay Zenkin,1* Yulia Yuzenkova,1 Konstantin Severinov1,2,3*
Fidelity of template-dependent nucleic acid synthesis is the main determinant of stable heredity and error-free gene expression. The mechanism (or mechanisms) ensuring fidelity of transcription by DNA-dependent RNA polymerases (RNAPs) is not fully understood. Here, we show that the 3' end–proximal nucleotide of the nascent transcript stimulates hydrolysis of the penultimate phosphodiester bond by providing active groups and coordination bonds to the RNAP active center. This stimulation is much higher in the case of misincorporated nucleotide. We show that during transcription elongation, the hydrolytic reaction stimulated by misincorporated nucleotides proofreads most of the misincorporation events and thus serves as an intrinsic mechanism of transcription fidelity.
http://www.sciencemag.org/cgi/content/abstract/sci;313/5786/518
Self-Correcting Messages
Patrick Cramer
Mistakes can occur as RNA polymerase copies DNA into transcripts. A proofreading mechanism that removes the incorrect RNA is triggered by the erroneous RNA itself.
http://www.sciencemag.org/cgi/content/summary/sci;313/5786/447