Difference between revisions of "Stusti 2018"
(→The RNA world and evolution) |
|||
| Line 9: | Line 9: | ||
| − | 25848023 | + | 25848023 24769284 |
25571850 | 25571850 | ||
25964329 | 25964329 | ||
| Line 39: | Line 39: | ||
== Ribozymes == | == Ribozymes == | ||
| − | <pubmed>27130889 | + | <pubmed>27130889 15029187 18079181 |
| − | 27687155 27187488 | + | 19781673 21848325 |
| + | |||
| + | 24769284 28192411 | ||
| + | |||
| + | 26481500 17624654 27408700 | ||
| + | |||
| + | 27687155 20100492 27187488 | ||
27863022 | 27863022 | ||
| Line 61: | Line 67: | ||
== The RNA world and evolution == | == The RNA world and evolution == | ||
| − | <pubmed> | + | <pubmed> 25109990 |
| − | |||
| + | 25385129 25734234 | ||
| + | 25739364 26439358 | ||
| + | 17540026 | ||
| + | 29031737 28657884 | ||
19117371</pubmed> | 19117371</pubmed> | ||
| + | |||
== RNA modification == | == RNA modification == | ||
| − | <pubmed> 26832457 27375676 | + | <pubmed> 26189113 26832457 27375676 |
28264529 | 28264529 | ||
| Line 75: | Line 85: | ||
== RNA degradation/ processing == | == RNA degradation/ processing == | ||
| − | <pubmed> | + | <pubmed> 26096689 28202538</pubmed> |
| + | |||
| + | == Regulation by non-coding RNA== | ||
| + | <pubmed> 18981470 | ||
| + | |||
| + | 24667238 | ||
</pubmed> | </pubmed> | ||
Revision as of 15:43, 11 April 2018
Contents
- 1 Die Sprache der RNA: Von RNA-Schaltern zu CRISPR/ Cas
- 1.1 Riboswitches
- 1.2 Riboregulation and virulence, targeting by antibiotics
- 1.3 RNA-based second messengers
- 1.4 Ribozymes
- 1.5 Protein- or tRNA-controlled RNA switches
- 1.6 RNA thermometers
- 1.7 The RNA world and evolution
- 1.8 RNA modification
- 1.9 RNA degradation/ processing
- 1.10 Regulation by non-coding RNA
- 1.11 CRISPR/Cas: Science
- 1.12 CRISPR/Cas: Application
Die Sprache der RNA: Von RNA-Schaltern zu CRISPR/ Cas
Riboswitches
Riboregulation and virulence, targeting by antibiotics
RNA-based second messengers
Ribozymes
Protein- or tRNA-controlled RNA switches
RNA thermometers
The RNA world and evolution
Ádám Kun, Ádám Radványi
The evolution of the genetic code: Impasses and challenges.
Biosystems: 2018, 164;217-225
[PubMed:29031737]
[WorldCat.org]
[DOI]
(I p)
Thomas Fouqueau, Fabian Blombach, Finn Werner
Evolutionary Origins of Two-Barrel RNA Polymerases and Site-Specific Transcription Initiation.
Annu Rev Microbiol: 2017, 71;331-348
[PubMed:28657884]
[WorldCat.org]
[DOI]
(I p)
Abe Pressman, Celia Blanco, Irene A Chen
The RNA World as a Model System to Study the Origin of Life.
Curr Biol: 2015, 25(19);R953-63
[PubMed:26439358]
[WorldCat.org]
[DOI]
(I p)
Jessica C Bowman, Nicholas V Hud, Loren Dean Williams
The ribosome challenge to the RNA world.
J Mol Evol: 2015, 80(3-4);143-61
[PubMed:25739364]
[WorldCat.org]
[DOI]
(I p)
Daniel Lundin, Gustav Berggren, Derek T Logan, Britt-Marie Sjöberg
The origin and evolution of ribonucleotide reduction.
Life (Basel): 2015, 5(1);604-36
[PubMed:25734234]
[WorldCat.org]
[DOI]
(P e)
Paul G Higgs, Niles Lehman
The RNA World: molecular cooperation at the origins of life.
Nat Rev Genet: 2015, 16(1);7-17
[PubMed:25385129]
[WorldCat.org]
[DOI]
(I p)
Markus Ralser
The RNA world and the origin of metabolic enzymes.
Biochem Soc Trans: 2014, 42(4);985-8
[PubMed:25109990]
[WorldCat.org]
[DOI]
(I p)
Eugene V Koonin, Artem S Novozhilov
Origin and evolution of the genetic code: the universal enigma.
IUBMB Life: 2009, 61(2);99-111
[PubMed:19117371]
[WorldCat.org]
[DOI]
(I p)
Yuri I Wolf, Eugene V Koonin
On the origin of the translation system and the genetic code in the RNA world by means of natural selection, exaptation, and subfunctionalization.
Biol Direct: 2007, 2;14
[PubMed:17540026]
[WorldCat.org]
[DOI]
(I e)
RNA modification
RNA degradation/ processing
Regulation by non-coding RNA
CRISPR/Cas: Science
CRISPR/Cas: Application