Difference between revisions of "Stusti 2018"

From SubtiWiki
Jump to: navigation, search
 
Line 23: Line 23:
 
<pubmed>19381267 28591515 27378291</pubmed>
 
<pubmed>19381267 28591515 27378291</pubmed>
  
== RNA thermometers: Jana Horlacher ==
 
<pubmed>25477380 27060146 </pubmed>
 
 
   
 
   
 
== The RNA world and evolution: Roman Doll ==
 
== The RNA world and evolution: Roman Doll ==
Line 68: Line 66:
 
== The mysterious function and role of 6S-RNA and pRNA in bacteria ==
 
== The mysterious function and role of 6S-RNA and pRNA in bacteria ==
 
<pubmed>    24786589  17383220 24742053 23457253</pubmed>
 
<pubmed>    24786589  17383220 24742053 23457253</pubmed>
 +
 +
== RNA thermometers==
 +
<pubmed>25477380 27060146 </pubmed>

Latest revision as of 13:42, 27 July 2018

Contents

Die Sprache der RNA: Von RNA-Schaltern zu CRISPR/ Cas

What makes RNA such a special molecule – specific chemical and structural features of RNA: Niklas Kehl

David A Hiller, Scott A Strobel
The chemical versatility of RNA.
Philos Trans R Soc Lond B Biol Sci: 2011, 366(1580);2929-35
[PubMed:21930584] [WorldCat.org] [DOI] (I p)


RNA synthesis – DNA and RNA dependent RNA polymerases and primase during transcription, replication and repair: Andrea Lehner


Ribozymes (catalytically active RNAs: Christian Thielscher)


The Ribosome - the role and function of ribosomal RNAs and the central dogma of molecular biology: Matthias Lenz


The Splicosome - the mechanism of mRNA splicing – alternative gene expression, genome size definition and phenotype plasticity: Christian Schneider


Riboregulation and virulence, targeting by antibiotics: Theresia Eisele


Riboswitch modeling: Mark Sinzger


The RNA world and evolution: Roman Doll


RNA modification: Jan Michel Göring


RNA degradation/processing: Lena Kricsfalussy-Hrabar


Regulation by non-coding RNA: Maxin Drömer



RNA dependent DNA Polymerases - from telomerase to retroviruses: Ansgar Stenzel


CRISPR/Cas: Science – the bacterial “immune” system: Maximilian Schreier

Yoshizumi Ishino, Mart Krupovic, Patrick Forterre
History of CRISPR-Cas from Encounter with a Mysterious Repeated Sequence to Genome Editing Technology.
J Bacteriol: 2018, 200(7);
[PubMed:29358495] [WorldCat.org] [DOI] (I e)

Lina M Leon, Senén D Mendoza, Joseph Bondy-Denomy
How bacteria control the CRISPR-Cas arsenal.
Curr Opin Microbiol: 2018, 42;87-95
[PubMed:29169146] [WorldCat.org] [DOI] (I p)

Fuguo Jiang, Jennifer A Doudna
CRISPR-Cas9 Structures and Mechanisms.
Annu Rev Biophys: 2017, 46;505-529
[PubMed:28375731] [WorldCat.org] [DOI] (I p)


CRISPR/Cas: Application and groundbreaking perspectives: Johann Liebeton


Synthesis, maturation and function of tRNAs – The wobble hypothesis and specific codon usage as a molecular barrier for horizontal gene transfer: Artur Fornol


Outlook: Finding function in mystery transcripts – eRNAs, long-non coding (lncRNA) and circular RNA (circRNA)


Outlook: RNA and SELEX – new prospects and applications for targeted interference with regulatory pathways


RNA-based second messengers: Jörg Stülke


Riboswitches: Jörg Stülke


RNA dependent RNA Polymerases – the RNA replicase

Sangita Venkataraman, Burra V L S Prasad, Ramasamy Selvarajan
RNA Dependent RNA Polymerases: Insights from Structure, Function and Evolution.
Viruses: 2018, 10(2);
[PubMed:29439438] [WorldCat.org] [DOI] (I e)

Kenneth K S Ng, Jamie J Arnold, Craig E Cameron
Structure-function relationships among RNA-dependent RNA polymerases.
Curr Top Microbiol Immunol: 2008, 320;137-56
[PubMed:18268843] [WorldCat.org] [DOI] (P p)

E K O'Reilly, C C Kao
Analysis of RNA-dependent RNA polymerase structure and function as guided by known polymerase structures and computer predictions of secondary structure.
Virology: 1998, 252(2);287-303
[PubMed:9878607] [WorldCat.org] [DOI] (P p)


The mysterious function and role of 6S-RNA and pRNA in bacteria


RNA thermometers