NCBI
PubMed
A service of the
U.S. National Library of Medicine
and the
National Institutes of Health
My NCBI
[Sign In]
[Register]
All Databases
PubMed
Nucleotide
Protein
Genome
Structure
OMIM
PMC
Journals
Books
Search
Database name
PubMed
Protein
Nucleotide
GSS
EST
Structure
Genome
Books
CancerChromosomes
Conserved Domains
dbGaP
3D Domains
Gene
Genome Project
GENSAT
GEO Profiles
GEO DataSets
HomoloGene
Journals
MeSH
NCBI Web Site
NLM Catalog
OMIA
OMIM
PMC
PopSet
Probe
Protein Clusters
PubChem BioAssay
PubChem Compound
PubChem Substance
SNP
Taxonomy
ToolKit
UniGene
UniSTS
for
Search term
Go
Clear
Advanced Search
Limits
Preview/Index
History
Clipboard
Details
Your browser version may not work well with NCBI's Web applications. More information
here...
Display
Summary
Brief
Abstract
AbstractPlus
Citation
MEDLINE
XML
UI List
LinkOut
ASN.1
Related Articles
Cited in Books
CancerChrom Links
Domain Links
3D Domain Links
dbGaP Links
GEO DataSet Links
Gene Links
Gene (OMIM) Links
Gene (GeneRIF) Links
Genome Links
Project Links
GENSAT Links
GEO Profile Links
HomoloGene Links
Nucleotide Links
Nucleotide (RefSeq) Links
Nucleotide (Weighted) Links
EST Links
EST (RefSeq) Links
GSS Links
GSS (RefSeq) Links
OMIA Links
OMIM (calculated) Links
OMIM (cited) Links
BioAssay Links
Compound Links
Compound (MeSH Keyword)
Compound (Publisher) Links
Substance Links
Substance (MeSH Keyword)
Substance (Publisher) Links
PMC Links
Cited in PMC
PopSet Links
Probe Links
Protein Links
Protein (RefSeq) Links
Protein (Weighted) Links
Protein Cluster Links
Cited Articles
SNP Links
SNP (Cited)
Structure Links
Taxonomy via GenBank
UniGene Links
UniSTS Links
Show
5
10
20
50
100
200
500
Sort By
Pub Date
First Author
Last Author
Journal
Title
Send to
Text
File
Printer
Clipboard
Collections
E-mail
Order
All: 1
Review: 0
Click to change filter selection through MyNCBI.
1:
Nature.
2008 Jan 17;451(7176):355-8.
Related Articles
,
Links
The bacterial enzyme RppH triggers messenger RNA degradation by 5' pyrophosphate removal.
Deana A
,
Celesnik H
,
Belasco JG
.
Kimmel Center for Biology and Medicine at the Skirball Institute, and Department of Microbiology, New York University School of Medicine, New York, New York 10016, USA.
The long-standing assumption that messenger RNA (mRNA) degradation in Escherichia coli begins with endonucleolytic cleavage has been challenged by the recent discovery that RNA decay can be triggered by a prior non-nucleolytic event that marks transcripts for rapid turnover: the rate-determining conversion of the 5' terminus from a triphosphate to a monophosphate. This modification creates better substrates for the endonuclease RNase E, whose cleavage activity at internal sites is greatly enhanced when the RNA 5' end is monophosphorylated. Moreover, it suggests an explanation for the influence of 5' termini on the endonucleolytic cleavage of primary transcripts, which are triphosphorylated. However, no enzyme capable of removing pyrophosphate from RNA 5' ends has been identified in any bacterial species. Here we show that the E. coli protein RppH (formerly NudH/YgdP) is the RNA pyrophosphohydrolase that initiates mRNA decay by this 5'-end-dependent pathway. In vitro, RppH efficiently removes pyrophosphate from the 5' end of triphosphorylated RNA, irrespective of the identity of the 5'-terminal nucleotide. In vivo, it accelerates the degradation of hundreds of E. coli transcripts by converting their triphosphorylated 5' ends to a more labile monophosphorylated state that can stimulate subsequent ribonuclease cleavage. That the action of the pyrophosphohydrolase is impeded when the 5' end is structurally sequestered by a stem-loop helps to explain the stabilizing influence of 5'-terminal base pairing on mRNA lifetimes. Together, these findings suggest a possible basis for the effect of RppH and its orthologues on the invasiveness of bacterial pathogens. Interestingly, this master regulator of 5'-end-dependent mRNA degradation in E. coli not only catalyses a process functionally reminiscent of eukaryotic mRNA decapping but also bears an evolutionary relationship to the eukaryotic decapping enzyme Dcp2.
Publication Types:
Research Support, N.I.H., Extramural
PMID: 18202662 [PubMed - indexed for MEDLINE]
Display
Summary
Brief
Abstract
AbstractPlus
Citation
MEDLINE
XML
UI List
LinkOut
ASN.1
Related Articles
Cited in Books
CancerChrom Links
Domain Links
3D Domain Links
dbGaP Links
GEO DataSet Links
Gene Links
Gene (OMIM) Links
Gene (GeneRIF) Links
Genome Links
Project Links
GENSAT Links
GEO Profile Links
HomoloGene Links
Nucleotide Links
Nucleotide (RefSeq) Links
Nucleotide (Weighted) Links
EST Links
EST (RefSeq) Links
GSS Links
GSS (RefSeq) Links
OMIA Links
OMIM (calculated) Links
OMIM (cited) Links
BioAssay Links
Compound Links
Compound (MeSH Keyword)
Compound (Publisher) Links
Substance Links
Substance (MeSH Keyword)
Substance (Publisher) Links
PMC Links
Cited in PMC
PopSet Links
Probe Links
Protein Links
Protein (RefSeq) Links
Protein (Weighted) Links
Protein Cluster Links
Cited Articles
SNP Links
SNP (Cited)
Structure Links
Taxonomy via GenBank
UniGene Links
UniSTS Links
Show
5
10
20
50
100
200
500
Sort By
Pub Date
First Author
Last Author
Journal
Title
Send to
Text
File
Printer
Clipboard
Collections
E-mail
Order
About Entrez
Text Version
Entrez PubMed
Overview
Help
|
FAQ
Tutorials
New/Noteworthy
E-Utilities
PubMed Services
Journals Database
MeSH Database
Single Citation Matcher
Batch Citation Matcher
Clinical Queries
Special Queries
LinkOut
My NCBI
Related Resources
Order Documents
NLM Mobile
NLM Catalog
NLM Gateway
TOXNET
Consumer Health
Clinical Alerts
ClinicalTrials.gov
PubMed Central
Write to the Help Desk
NCBI
|
NLM
|
NIH
Department of Health & Human Services
Privacy Statement
|
Freedom of Information Act
|
Disclaimer