The IR-Homeostat Hypothesis: Intron Retention as an Evolutionarily Conserved Fine-Tuning Layer and a Reversible Blood Biomarker of Homeostatic Dysregulation in Mood Disorders. [PDF]
Okada N +4 more
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Emerging Technologies in RNA-Protein Interaction Analysis. [PDF]
Muthumuni NT, Guo J.
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PTBP1 is upregulated in response to Zika virus infection and restrains viral replication by hijacking viral NS1 protein to induce NS1 degradation. [PDF]
Rao M +7 more
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Brave new RNA world(s): from prebiotic chemistry to gene regulation and RNA technology. [PDF]
Flores-García AA +7 more
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Diffuse Sclerosing Variant of Papillary Thyroid Carcinoma: A Single-Center Case Series of Five Patients. [PDF]
Sun X, Liu Y, Peng J, Liu J.
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Sequence complexity of heterogeneous nuclear RNA in sea urchin embryos [PDF]
The sequence complexity of heterogeneous nuclear RNA is sea urchin gastrulas was measured by RNA-driven hybridization reactions with nonrepetitive sea urchin DNA. 28.5% of the sequence complexity of the genome is represented in the nuclear RNA. This amounts to 1.74 X 10(8) nucleotides of diverse sequence, more than 10 times the nucleotide complexity of
Hough, Barbara R. +3 more
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Molecular Recognition of an RNA Trafficking Element by Heterogeneous Nuclear Ribonucleoprotein A2 [PDF]
Heterogeneous nuclear ribonucleoprotein (hnRNP) A2 is a multitasking protein involved in RNA packaging, alternative splicing of pre-mRNA, telomere maintenance, cytoplasmic RNA trafficking, and translation. It binds short segments of single-stranded nucleic acids, including the A2RE11 RNA element that is necessary and sufficient for cytoplasmic ...
Landsberg, Michael J. +2 more
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The heterogeneous nuclear RNA of chicken erythroblasts
Biochimica et Biophysica Acta (BBA) - Nucleic Acids and Protein Synthesis, 1977Heterogeneous nuclear RNA (hnRNA) from chicken erythroblasts has a modal molecular weight of 1.6 -10(6) in 99% dimethylsulfoxide. When erythroblasts are labeled continuously with [14C]uridine, nuclear RNA is labeled as a single kinetic component with a half-life of 18 min.
P L, Williamson, A J, Tobin
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