Difference between revisions of "Stusti 2018"

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== Die Sprache der RNA: Von RNA-Schaltern zu CRISPR/ Cas ==
+
= Die Sprache der RNA: Von RNA-Schaltern zu CRISPR/ Cas =
  
* Riboswitches
+
==  What makes RNA such a special molecule – specific chemical and structural features of RNA: Niklas Kehl ==
<pubmed>   27607554    28121427      28206750  28375729    28396576    28541183    28455443
+
<pubmed> 21930584</pubmed>
  
    29537923      27798597
+
== RNA synthesis – DNA and RNA dependent RNA polymerases and primase during transcription, replication and repair: Andrea Lehner ==
 +
<pubmed>  24219496 8156586 28979293 26109351</pubmed>
  
    29135333 29420816  28611182</pubmed>
+
== Ribozymes (catalytically active RNAs: Christian Thielscher) ==
 +
<pubmed> 21930582 22454536 14730013 10554775 21930585 6297745</pubmed>
  
* Riboregulation and virulence
+
== The Ribosome - the role and function of ribosomal RNAs and the central dogma of molecular biology: Matthias Lenz ==
<pubmed>       27651123  27672192  28434876  28529506 28886688</pubmed>  
+
<pubmed> 18292779 21930591 25500179</pubmed>
  
* RNA-based second messengers
+
== The Splicosome - the mechanism of mRNA splicing – alternative gene expression, genome size definition and phenotype plasticity: Christian Schneider ==
<pubmed>28420751</pubmed>  
+
<pubmed> 24452469,26682498 25798239 </pubmed>
  
* Ribozymes
+
== Riboregulation and virulence, targeting by antibiotics: Theresia Eisele ==
  <pubmed>    27130889</pubmed>
+
<pubmed>27651123      26416753
 +
  27120414   27672192  28434876  28529506 28886688</pubmed> 
 +
 
 +
== Riboswitch modeling: Mark Sinzger ==
 +
<pubmed>19381267 28591515 27378291</pubmed>
 +
 
 +
 +
== The RNA world and evolution: Roman Doll ==
 +
<pubmed>      25109990 25385129    25734234 25739364    26439358 17540026 29031737      28657884  19117371</pubmed>
 +
 
 +
== RNA modification: Jan Michel Göring ==
 +
<pubmed>      26189113    26832457  27375676
 +
    28264529 28624569</pubmed>
 +
 
 +
== RNA degradation/processing: Lena Kricsfalussy-Hrabar ==
 +
<pubmed>      26096689  28202538    19239894 </pubmed>
 +
 
 +
== Regulation by non-coding RNA: Maxin Drömer ==
 +
<pubmed>        18981470      24667238 </pubmed>
 +
 
 +
== RNA dependent DNA Polymerases - from telomerase to retroviruses: Ansgar Stenzel==
 +
<pubmed>      18972389 26830230     28141967 </pubmed>
 +
 
 +
== CRISPR/Cas: Science – the bacterial “immune” system: Maximilian Schreier ==
 +
<pubmed>      29358495      29169146 28375731</pubmed>
 +
 
 +
== CRISPR/Cas: Application and groundbreaking  perspectives: Johann Liebeton ==
 +
<pubmed>    26771484 </pubmed>
 +
 
 +
== Synthesis, maturation and function of tRNAs – The wobble hypothesis and specific codon usage as a molecular barrier for horizontal gene transfer: Artur Fornol ==
 +
<pubmed>    22016848 26186290 21957054 23166520 21930591</pubmed>
 +
 
 +
== Outlook: Finding function in mystery transcripts – eRNAs, long-non coding (lncRNA) and circular RNA (circRNA) ==
 +
<pubmed>      28533025 25561718 26883671 28485684 29182528 21925379</pubmed>
 +
 
 +
== Outlook: RNA and SELEX – new prospects and applications for targeted interference with regulatory pathways ==
 +
<pubmed> 17627883 19943183  </pubmed>
 +
 
 +
== RNA-based second messengers: Jörg Stülke ==
 +
<pubmed> 28420751    25616065 25682701   25869574 26280533</pubmed>
 +
 
 +
== Riboswitches: Jörg Stülke ==
 +
<pubmed>    27607554      26655897   28121427      29618088 25794618    25794617 25848023    24769284 25571850   25964329 25959893        24816551 25583497  26118534 26494285 28206750  28375729    28396576    28541183    28455443   29537923      27798597 29135333  29420816  28611182</pubmed>
 +
 
 +
== RNA dependent RNA Polymerases – the RNA replicase ==
 +
<pubmed>          29439438     18268843 9878607 </pubmed>
 +
 
 +
== The mysterious function and role of 6S-RNA and pRNA in bacteria ==
 +
<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


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

Savio T de Farias, Ariosvaldo P Dos Santos Junior, Thais G Rêgo, Marco V José
Origin and Evolution of RNA-Dependent RNA Polymerase.
Front Genet: 2017, 8;125
[PubMed:28979293] [WorldCat.org] [DOI] (P e)

Thomas A Guilliam, Benjamin A Keen, Nigel C Brissett, Aidan J Doherty
Primase-polymerases are a functionally diverse superfamily of replication and repair enzymes.
Nucleic Acids Res: 2015, 43(14);6651-64
[PubMed:26109351] [WorldCat.org] [DOI] (I p)

Maria L Kireeva, Mikhail Kashlev, Zachary F Burton
RNA polymerase structure, function, regulation, dynamics, fidelity, and roles in gene expression.
Chem Rev: 2013, 113(11);8325-30
[PubMed:24219496] [WorldCat.org] [DOI] (I p)

S Buratowski
The basics of basal transcription by RNA polymerase II.
Cell: 1994, 77(1);1-3
[PubMed:8156586] [WorldCat.org] [DOI] (P p)


Ribozymes (catalytically active RNAs: Christian Thielscher)

Christian Hammann, Andrej Luptak, Jonathan Perreault, Marcos de la Peña
The ubiquitous hammerhead ribozyme.
RNA: 2012, 18(5);871-85
[PubMed:22454536] [WorldCat.org] [DOI] (I p)

Sidney Altman
Ribonuclease P.
Philos Trans R Soc Lond B Biol Sci: 2011, 366(1580);2936-41
[PubMed:21930585] [WorldCat.org] [DOI] (I p)

David M J Lilley
Mechanisms of RNA catalysis.
Philos Trans R Soc Lond B Biol Sci: 2011, 366(1580);2910-7
[PubMed:21930582] [WorldCat.org] [DOI] (I p)

David M J Lilley
The Varkud satellite ribozyme.
RNA: 2004, 10(2);151-8
[PubMed:14730013] [WorldCat.org] [DOI] (P p)

R Shippy, R Lockner, M Farnsworth, A Hampel
The hairpin ribozyme. Discovery, mechanism, and development for gene therapy.
Mol Biotechnol: 1999, 12(1);117-29
[PubMed:10554775] [WorldCat.org] [DOI] (P p)

K Kruger, P J Grabowski, A J Zaug, J Sands, D E Gottschling, T R Cech
Self-splicing RNA: autoexcision and autocyclization of the ribosomal RNA intervening sequence of Tetrahymena.
Cell: 1982, 31(1);147-57
[PubMed:6297745] [WorldCat.org] [DOI] (P p)


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

Panagiotis Papasaikas, Juan Valcárcel
The Spliceosome: The Ultimate RNA Chaperone and Sculptor.
Trends Biochem Sci: 2016, 41(1);33-45
[PubMed:26682498] [WorldCat.org] [DOI] (I p)

Yan Wang, Jing Liu, B O Huang, Yan-Mei Xu, Jing Li, Lin-Feng Huang, Jin Lin, Jing Zhang, Qing-Hua Min, Wei-Ming Yang, Xiao-Zhong Wang
Mechanism of alternative splicing and its regulation.
Biomed Rep: 2015, 3(2);152-158
[PubMed:25798239] [WorldCat.org] [DOI] (P p)

A Gregory Matera, Zefeng Wang
A day in the life of the spliceosome.
Nat Rev Mol Cell Biol: 2014, 15(2);108-21
[PubMed:24452469] [WorldCat.org] [DOI] (I p)


Riboregulation and virulence, targeting by antibiotics: Theresia Eisele


Riboswitch modeling: Mark Sinzger


The RNA world and evolution: Roman Doll

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: Jan Michel Göring

Baixing Wu, Li Li, Ying Huang, Jinbiao Ma, Jinrong Min
##Title##
Curr Opin Struct Biol: 2017, 47;67-76
[PubMed:28624569] [WorldCat.org] [DOI] (I p)

Hiroyuki Hori
Transfer RNA methyltransferases with a SpoU-TrmD  (SPOUT) fold and their modified nucleosides in  tRNA.
Biomolecules: 2017, 7(1);
[PubMed:28264529] [WorldCat.org] [DOI] (I e)

Ajay K Rana, Serge Ankri
Reviving the RNA World: An Insight into the Appearance of RNA Methyltransferases.
Front Genet: 2016, 7;99
[PubMed:27375676] [WorldCat.org] [DOI] (P e)

Marcus Fislage, Lina Wauters, Wim Versées
Invited review: MnmE, a GTPase that drives a complex tRNA modification reaction.
Biopolymers: 2016, 105(8);568-79
[PubMed:26832457] [WorldCat.org] [DOI] (I p)

Clément Dégut, Luc Ponchon, Marcia Folly-Klan, Pierre Barraud, Carine Tisné
The m1A(58) modification in eubacterial tRNA: An overview of tRNA recognition and mechanism of catalysis by TrmI.
Biophys Chem: 2016, 210;27-34
[PubMed:26189113] [WorldCat.org] [DOI] (I p)


RNA degradation/processing: Lena Kricsfalussy-Hrabar


Regulation by non-coding RNA: Maxin Drömer



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

R Alex Wu, Heather E Upton, Jacob M Vogan, Kathleen Collins
Telomerase Mechanism of Telomere Synthesis.
Annu Rev Biochem: 2017, 86;439-460
[PubMed:28141967] [WorldCat.org] [DOI] (I p)

Yoshiko Maida, Mami Yasukawa, Kenkichi Masutomi
De Novo RNA Synthesis by RNA-Dependent RNA Polymerase Activity of Telomerase Reverse Transcriptase.
Mol Cell Biol: 2016, 36(8);1248-59
[PubMed:26830230] [WorldCat.org] [DOI] (I e)

George Tzertzinis, Stanley Tabor, Nicole M Nichols
RNA-dependent DNA polymerases.
Curr Protoc Mol Biol: 2008, Chapter 3;Unit3.7
[PubMed:18972389] [WorldCat.org] [DOI] (I p)


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


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

Tessa E F Quax, Nico J Claassens, Dieter Söll, John van der Oost
Codon Bias as a Means to Fine-Tune Gene Expression.
Mol Cell: 2015, 59(2);149-61
[PubMed:26186290] [WorldCat.org] [DOI] (I p)

Sibah Alkatib, Lars B Scharff, Marcelo Rogalski, Tobias T Fleischmann, Annemarie Matthes, Stefanie Seeger, Mark A Schöttler, Stephanie Ruf, Ralph Bock
The contributions of wobbling and superwobbling to the reading of the genetic code.
PLoS Genet: 2012, 8(11);e1003076
[PubMed:23166520] [WorldCat.org] [DOI] (I p)

Tamir Tuller
Codon bias, tRNA pools and horizontal gene transfer.
Mob Genet Elements: 2011, 1(1);75-77
[PubMed:22016848] [WorldCat.org] [DOI] (P p)

Richard Giegé, Frank Jühling, Joern Pütz, Peter Stadler, Claude Sauter, Catherine Florentz
Structure of transfer RNAs: similarity and variability.
Wiley Interdiscip Rev RNA: 2012, 3(1);37-61
[PubMed:21957054] [WorldCat.org] [DOI] (I p)

Ingo Wohlgemuth, Corinna Pohl, Joerg Mittelstaet, Andrey L Konevega, Marina V Rodnina
Evolutionary optimization of speed and accuracy of decoding on the ribosome.
Philos Trans R Soc Lond B Biol Sci: 2011, 366(1580);2979-86
[PubMed:21930591] [WorldCat.org] [DOI] (I p)


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

Shahnaz Haque, Lorna W Harries
Circular RNAs (circRNAs) in Health and Disease.
Genes (Basel): 2017, 8(12);
[PubMed:29182528] [WorldCat.org] [DOI] (P e)

Feng Liu
Enhancer-derived RNA: A Primer.
Genomics Proteomics Bioinformatics: 2017, 15(3);196-200
[PubMed:28533025] [WorldCat.org] [DOI] (I p)

Kuei-Yang Hsiao, H Sunny Sun, Shaw-Jenq Tsai
Circular RNA - New member of noncoding RNA with novel functions.
Exp Biol Med (Maywood): 2017, 242(11);1136-1141
[PubMed:28485684] [WorldCat.org] [DOI] (I p)

Yiwen Fang, Melissa J Fullwood
Roles, Functions, and Mechanisms of Long Non-coding RNAs in Cancer.
Genomics Proteomics Bioinformatics: 2016, 14(1);42-54
[PubMed:26883671] [WorldCat.org] [DOI] (I p)

Tae-Kyung Kim, Martin Hemberg, Jesse M Gray
Enhancer RNAs: a class of long noncoding RNAs synthesized at enhancers.
Cold Spring Harb Perspect Biol: 2015, 7(1);a018622
[PubMed:25561718] [WorldCat.org] [DOI] (I e)

Kevin C Wang, Howard Y Chang
Molecular mechanisms of long noncoding RNAs.
Mol Cell: 2011, 43(6);904-14
[PubMed:21925379] [WorldCat.org] [DOI] (I p)


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


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


RNA thermometers