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Organizing biological data
Berg JM, Tymoczko JL, Stryer L.
W H Freeman (New York); 2002.
iBAT total RNA profiles of wild type C57BL/6N mice exposed to cold and high fat diet
transcriptome profiles of differentiated wt1-SAM brown adipocytes treated with different LNAs and stimulated with isoproterenol
Transcriptome profiles of differentiated wt1-SAM brown adipocytes treated with different sgRNA encoding plasmids and stimulated with isoproterenol
Adipose tissue poly RNA profiles of C57BL/6N-ΔGm15551 mice.
iBAT polyA RNA profiles of wild type C57BL/6N-ΔGm15551 mice exposed to cold.
iBAT histone modification ChIP seq of wild type C57BL/6N mice exposed to cold and high fat diet.
Comprehensive transcriptional profiling and mouse phenotyping reveals dispensable role for adipose tissue selective long noncoding RNA Gm15551.
Functional RNA dynamics are progressively governed by RNA destabilization during the adaptation to chronic hypoxia
Multi-omics approaches reveal TNF-mediated inhibition of tissue reparative macrophages is via a gene-selective transcriptional mechanism (scRNA-Seq)
Multi-omics approaches reveal TNF-mediated inhibition of tissue reparative macrophages is via a gene-selective transcriptional mechanism (bulk RNA-Seq)
Multi-omics approaches reveal TNF-mediated inhibition of tissue reparative macrophages is via a gene-selective transcriptional mechanism (ATAC-Seq)
The genome organization of Neurospora crassa at high-resolution uncovers principles of fungal chromosome topology
Combinatorial optimization of mRNA structure, stability, and translation for RNA-based therapeutics
Time-lapse super-resolution imaging reveals key principles for cis-limited Xist RNA localization [ChrRNA-seq]
Time-lapse super-resolution imaging reveals key principles for cis-limited Xist RNA localization (RNA-SPLIT)
Cold-induced chromatin compaction and nuclear retention of clock mRNAs resets the circadian rhythm
A MAFG-lncRNA axis links systemic nutrient abundance to hepatic glucose metabolism: RNA profiles of metabolically active tissues.
A MAFG-lncRNA axis links systemic nutrient abundance to hepatic glucose metabolism: Liver RNA profiles of lean non-diabetic, obese non-diabetic as well as obese diabetic humans.
A MAFG-lncRNA axis links systemic nutrient abundance to hepatic glucose metabolism: Liver RNA profiles of mice injected with control, Mafg and LncIRS2 LNA.
A MAFG-lncRNA axis links systemic nutrient abundance to hepatic glucose metabolism: Liver RNA profiles of mice treated with adenoviruses expressing either Mafg cDNA or empty vector.
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