A Z-DNA sequence reduces slipped-strand structure formation in the myotonic dystrophy type 2 (CCTG) x (CAGG) repeat
about
The genome-wide distribution of non-B DNA motifs is shaped by operon structure and suggests the transcriptional importance of non-B DNA structures in Escherichia coliMeasuring microsatellite conservation in mammalian evolution with a phylogenetic birth-death model.Z-DNA-forming sites identified by ChIP-Seq are associated with actively transcribed regions in the human genome.(CCUG)n RNA toxicity in a Drosophila model of myotonic dystrophy type 2 (DM2) activates apoptosis.Replication stalling and DNA microsatellite instability.Nrf2 activation is associated with Z-DNA formation in the human HO-1 promoter.The origin of genetic instability in CCTG repeatsParity-dependent hairpin configurations of repetitive DNA sequence promote slippage associated with DNA expansion.
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A Z-DNA sequence reduces slipped-strand structure formation in the myotonic dystrophy type 2 (CCTG) x (CAGG) repeat
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article científic
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article scientifique
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articolo scientifico
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artigo científico
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bilimsel makale
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scientific article published on 13 February 2009
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vedecký článok
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vetenskaplig artikel
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videnskabelig artikel
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vědecký článek
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name
A Z-DNA sequence reduces slipp ...... type 2 (CCTG) x (CAGG) repeat
@en
A Z-DNA sequence reduces slipp ...... the myotonic dystrophy type 2
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type
label
A Z-DNA sequence reduces slipp ...... type 2 (CCTG) x (CAGG) repeat
@en
A Z-DNA sequence reduces slipp ...... the myotonic dystrophy type 2
@nl
prefLabel
A Z-DNA sequence reduces slipp ...... type 2 (CCTG) x (CAGG) repeat
@en
A Z-DNA sequence reduces slipp ...... the myotonic dystrophy type 2
@nl
P2093
P2860
P356
P1476
A Z-DNA sequence reduces slipp ...... type 2 (CCTG) x (CAGG) repeat
@en
P2093
Mario Sirito
Ralf Krahe
Richard R Sinden
Sharon F Edwards
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P304
P356
10.1073/PNAS.0807699106
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P577
2009-02-13T00:00:00Z