DNA damage triggers SAF-A and RNA biogenesis factors exclusion from chromatin coupled to R-loops removal.Britton S, Dernoncourt E, Delteil C, Froment C, Schiltz O, Salles B, Frit P, Calsou P (2014) Nucleic Acids Res. 14(42).

DNA damage triggers SAF-A and RNA biogenesis factors exclusion from chromatin coupled to R-loops removal.
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The palmitoyl acyltransferase HIP14 shares a high proportion of interactors with huntingtin: implications for a role in the pathogenesis of Huntington’s disease.Butland SL, Sanders SS, Schmidt ME, Riechers SP, Lin DT, Martin DD, Vaid K, Graham RK, Singaraja RR, Wanker EE, Conibear E, Hayden MR (2014) Hum. Mol. Genet. 15(23).
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The palmitoyl acyltransferase HIP14 shares a high proportion of interactors with huntingtin: implications for a role in the pathogenesis of Huntington’s disease.
Butland SL, Sanders SS, Schmidt ME, Riechers SP, Lin DT, Martin DD, Vaid K, Graham RK, Singaraja RR, Wanker EE, Conibear E, Hayden MR (2014) Hum. Mol. Genet. 15(23).

Cytoscape cited!

Influence of DNA extraction methods, 16S rRNA targeted hypervariable regions and sample origins on the microbial diversity detected by 454 pyrosequencing in marine chemosynthetic ecosystems.Cruaud P, Vigneron A, Lucchetti-Miganeh C, Ciron PE, Godfroy A, Cambon-Bonavita MA (2014) Appl. Environ. Microbiol. ().Cytoscape cited!

Influence of DNA extraction methods, 16S rRNA targeted hypervariable regions and sample origins on the microbial diversity detected by 454 pyrosequencing in marine chemosynthetic ecosystems.
Cruaud P, Vigneron A, Lucchetti-Miganeh C, Ciron PE, Godfroy A, Cambon-Bonavita MA (2014) Appl. Environ. Microbiol. ().

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Cellulolytic Streptomyces strains associated with herbivorous insects share a phylogenetically-linked capacity for the degradation of lignocellulose.Book AJ, Lewin GR, McDonald BR, Takasuka TE, Doering DT, Adams AS, Blodgett JA, Clardy J, Raffa KF, Fox BG, Currie CR (2014) Appl. Environ. Microbiol. ().Cytoscape cited!

Cellulolytic Streptomyces strains associated with herbivorous insects share a phylogenetically-linked capacity for the degradation of lignocellulose.
Book AJ, Lewin GR, McDonald BR, Takasuka TE, Doering DT, Adams AS, Blodgett JA, Clardy J, Raffa KF, Fox BG, Currie CR (2014) Appl. Environ. Microbiol. ().

Cytoscape cited!
Systems-level perspective of sudden infant death syndrome.Salomonis, Pediatr Res. 2014 Jun 25.
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Systems-level perspective of sudden infant death syndrome.
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Cytoscape cited!

The intra viral protein interaction network of hepatitis C virus.Hagen N, Bayer K, Roesch K, Schindler M (2014) Mol. Cell Proteomics ().Cytoscape cited!

The intra viral protein interaction network of hepatitis C virus.
Hagen N, Bayer K, Roesch K, Schindler M (2014) Mol. Cell Proteomics ().

Cytoscape cited!
Meta-Analysis of Retrograde Signaling in Arabidopsis thaliana Reveals a Core Module of Genes Embedded in Complex Cellular Signaling Networks.Gläßer C, Haberer G, Finkemeier I, Pfannschmidt T, Kleine T, Leister D, Dietz KJ, Häusler RE, Grimm B, Mayer KF (2014) Mol Plant 7(7).

Meta-Analysis of Retrograde Signaling in Arabidopsis thaliana Reveals a Core Module of Genes Embedded in Complex Cellular Signaling Networks.
Gläßer C, Haberer G, Finkemeier I, Pfannschmidt T, Kleine T, Leister D, Dietz KJ, Häusler RE, Grimm B, Mayer KF (2014) Mol Plant 7(7).

Correcting for link loss in causal network inference caused by regulator interference.Wang Y, Penfold CA, Hodgson DA, Gifford ML, Burroughs NJ (2014) Bioinformatics ().

Correcting for link loss in causal network inference caused by regulator interference.
Wang Y, Penfold CA, Hodgson DA, Gifford ML, Burroughs NJ (2014) Bioinformatics ().

A transient disruption of fibroblastic transcriptional regulatory network facilitates trans-differentiation.Tomaru Y, Hasegawa R, Suzuki T, Sato T, Kubosaki A, Suzuki M, Kawaji H, Forrest AR, Hayashizaki Y,  , Shin JW, Suzuki H (2014) Nucleic Acids Res. ().

A transient disruption of fibroblastic transcriptional regulatory network facilitates trans-differentiation.
Tomaru Y, Hasegawa R, Suzuki T, Sato T, Kubosaki A, Suzuki M, Kawaji H, Forrest AR, Hayashizaki Y, , Shin JW, Suzuki H (2014) Nucleic Acids Res. ().