Insights into the mechanism of progressive RNA degradation by the archaeal exosome
about
Crystal structure of the S. solfataricus archaeal exosome reveals conformational flexibility in the RNA-binding ringProcessive RNA decay by the exosome: merits of a quantitative Bayesian sampling approachQuantitative analysis of processive RNA degradation by the archaeal RNA exosomeSki2-like RNA helicase structures: common themes and complex assembliesCrystal structure of Escherichia coli PNPase: Central channel residues are involved in processive RNA degradationCrystal Structure of Escherichia coli Polynucleotide Phosphorylase Core Bound to RNase E, RNA and Manganese: Implications for Catalytic Mechanism and RNA Degradosome AssemblyStructural and biochemical characterization of CRN-5 and Rrp46: An exosome component participating in apoptotic DNA degradationCrystal Structure of a 9-Subunit Archaeal Exosome in Pre-Catalytic States of the Phosphorolytic ReactionCrystal structure of human polynucleotide phosphorylase: insights into its domain function in RNA binding and degradationCrystal structure of an RNA-bound 11-subunit eukaryotic exosome complexThe exosome contains domains with specific endoribonuclease, exoribonuclease and cytoplasmic mRNA decay activities.Identification of archaeal proteins that affect the exosome function in vitro.Inhibition of homologous phosphorolytic ribonucleases by citrate may represent an evolutionarily conserved communicative link between RNA degradation and central metabolism.Structural components and architectures of RNA exosomesThe eukaryotic RNA exosomeStructure and function of the archaeal exosome.The Rrp4-exosome complex recruits and channels substrate RNA by a unique mechanism.The oligomeric architecture of the archaeal exosome is important for processive and efficient RNA degradation.The archaeal DnaG protein needs Csl4 for binding to the exosome and enhances its interaction with adenine-rich RNAs.The archaeal exosome: identification and quantification of site-specific motions that correlate with cap and RNA binding.Structure determination of an 11-subunit exosome in complex with RNA by molecular replacement.Through ancient rings thread programming strings.Archaeal DnaG contains a conserved N-terminal RNA-binding domain and enables tailing of rRNA by the exosome.RNA degradation by the plant RNA exosome involves both phosphorolytic and hydrolytic activities.Nop5 interacts with the archaeal RNA exosome.
P2860
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P2860
Insights into the mechanism of progressive RNA degradation by the archaeal exosome
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2008 nî lūn-bûn
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2008 թուականի Մայիսին հրատարակուած գիտական յօդուած
@hyw
2008 թվականի մայիսին հրատարակված գիտական հոդված
@hy
2008年の論文
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2008年論文
@yue
2008年論文
@zh-hant
2008年論文
@zh-hk
2008年論文
@zh-mo
2008年論文
@zh-tw
2008年论文
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name
Insights into the mechanism of progressive RNA degradation by the archaeal exosome
@ast
Insights into the mechanism of progressive RNA degradation by the archaeal exosome
@en
Insights into the mechanism of progressive RNA degradation by the archaeal exosome
@nl
type
label
Insights into the mechanism of progressive RNA degradation by the archaeal exosome
@ast
Insights into the mechanism of progressive RNA degradation by the archaeal exosome
@en
Insights into the mechanism of progressive RNA degradation by the archaeal exosome
@nl
prefLabel
Insights into the mechanism of progressive RNA degradation by the archaeal exosome
@ast
Insights into the mechanism of progressive RNA degradation by the archaeal exosome
@en
Insights into the mechanism of progressive RNA degradation by the archaeal exosome
@nl
P2860
P356
P1476
Insights into the mechanism of progressive RNA degradation by the archaeal exosome
@en
P2093
Beatriz G Guimarães
Marcos V A S Navarro
P2860
P304
14120-14131
P356
10.1074/JBC.M801005200
P407
P577
2008-03-19T00:00:00Z