Genome Regulation by Long Noncoding RNAs
Регуляция генома длинными некодирующими РНК
2012-06-05
SCID: 54.1/ftbqwpjr
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chromatin regulatorsgene expressiongenome regulationlong noncoding RNAsribonucleoprotein complexes
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Abstract (AI)
The central dogma of gene expression is that DNA is transcribed into messenger RNAs, which in turn serve as the template for protein synthesis. The discovery of extensive transcription of large RNA transcripts that do not code for proteins, termed long noncoding RNAs (lncRNAs), provides an important new perspective on the centrality of RNA in gene regulation. Here, we discuss genome-scale strategies to discover and characterize lncRNAs. An emerging theme from multiple model systems is that lncRNAs form extensive networks of ribonucleoprotein (RNP) complexes with numerous chromatin regulators and then target these enzymatic activities to appropriate locations in the genome. Consistent with this notion, lncRNAs can function as modular scaffolds to specify higher-order organization in RNP complexes and in chromatin states. The importance of these modes of regulation is underscored by the newly recognized roles of long RNAs for proper gene control across all kingdoms of life.
Key Findings
1
Extensive transcription produces long noncoding RNAs (lncRNAs) that expand the conventional DNA–RNA–protein view of gene regulation.
2
Genome-scale strategies enable systematic discovery and characterization of lncRNAs across model systems.
3
Long RNAs play important roles in controlling gene expression across all kingdoms of life.
4
lncRNAs act as modular scaffolds that organize higher-order RNP complexes and chromatin states.
5
lncRNAs form extensive ribonucleoprotein complexes with chromatin regulators and guide their enzymatic activities to specific genomic locations.
Research Object
long noncoding RNAs (lncRNAs) in genome regulation
Research Subject
the mechanisms by which lncRNAs regulate gene expression through ribonucleoprotein complex formation, chromatin targeting, and higher-order chromatin organization
Publication Details
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2012-06-05
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