scholarly article | Q13442814 |
P819 | ADS bibcode | 2014NatCo...5.3330Z |
P356 | DOI | 10.1038/NCOMMS4330 |
P2888 | exact match | https://scigraph.springernature.com/pub.10.1038/ncomms4330 |
P698 | PubMed publication ID | 24584353 |
P50 | author | Hyunsoo Shawn Je | Q56766175 |
P2093 | author name string | Wei Zhang | |
Li Zeng | |||
Eng King Tan | |||
Wei-Ping Yu | |||
Paul J Kim | |||
Selvaratnam Thevapriya | |||
P2860 | cites work | MicroRNAs can regulate human APP levels. | Q42426890 |
Neurons tend to stop migration and differentiate along the cortical internal plexiform zones in the Reelin signal-deficient mice | Q44121435 | ||
Role of APP phosphorylation in FE65-dependent gene transactivation mediated by AICD. | Q48529059 | ||
Role of phosphorylation of Alzheimer's amyloid precursor protein during neuronal differentiation. | Q53335648 | ||
A guide through present computational approaches for the identification of mammalian microRNA targets | Q61161512 | ||
Cleavage of Alzheimer's amyloid precursor protein (APP) by secretases occurs after O-glycosylation of APP in the protein secretory pathway. Identification of intracellular compartments in which APP cleavage occurs without using toxic agents that int | Q74299329 | ||
Expression profiling of mammalian microRNAs uncovers a subset of brain-expressed microRNAs with possible roles in murine and human neuronal differentiation | Q21194851 | ||
SOX22 is a new member of the SOX gene family, mainly expressed in human nervous tissue | Q24316287 | ||
A cAMP-response element binding protein-induced microRNA regulates neuronal morphogenesis | Q24537628 | ||
miRBase: microRNA sequences, targets and gene nomenclature | Q24538656 | ||
MicroRNAs: target recognition and regulatory functions | Q24609584 | ||
miRBase: integrating microRNA annotation and deep-sequencing data | Q24615914 | ||
Organogenesis relies on SoxC transcription factors for the survival of neural and mesenchymal progenitors | Q24629179 | ||
The three SoxC proteins--Sox4, Sox11 and Sox12--exhibit overlapping expression patterns and molecular properties | Q24649873 | ||
Sox12 deletion in the mouse reveals nonreciprocal redundancy with the related Sox4 and Sox11 transcription factors | Q24651050 | ||
A comparison of normalization methods for high density oligonucleotide array data based on variance and bias | Q27860710 | ||
Conserved seed pairing, often flanked by adenosines, indicates that thousands of human genes are microRNA targets | Q27860792 | ||
The utility of Ki-67 and BrdU as proliferative markers of adult neurogenesis | Q28207636 | ||
MicroRNA-16 targets amyloid precursor protein to potentially modulate Alzheimer's-associated pathogenesis in SAMP8 mice | Q28287534 | ||
Expression of Sox11 in adult neurogenic niches suggests a stage-specific role in adult neurogenesis | Q28505313 | ||
DOCK7 interacts with TACC3 to regulate interkinetic nuclear migration and cortical neurogenesis | Q28512742 | ||
Behavioral and anatomical deficits in mice homozygous for a modified beta-amyloid precursor protein gene | Q28586800 | ||
A TAG1-APP signalling pathway through Fe65 negatively modulates neurogenesis | Q28587599 | ||
BiNGO: a Cytoscape plugin to assess overrepresentation of gene ontology categories in biological networks | Q29547427 | ||
The evolution of gene regulation by transcription factors and microRNAs | Q29617552 | ||
Identification of new central nervous system specific mouse microRNAs | Q33237769 | ||
Patterns of microRNA expression in non-human primate cells correlate with neoplastic development in vitro | Q34434075 | ||
Noxp20 and Noxp70, two new markers of early neuronal differentiation, detected in teratocarcinoma-derived neuroectodermic precursor cells. | Q34572462 | ||
Phosphorylation of amyloid precursor protein (APP) at Thr668 regulates the nuclear translocation of the APP intracellular domain and induces neurodegeneration | Q34718043 | ||
MicroRNAs: novel biomarkers for human cancer | Q34952989 | ||
The Elegance of the MicroRNAs: A Neuronal Perspective | Q36255488 | ||
Asymmetric segregation of the double-stranded RNA binding protein Staufen2 during mammalian neural stem cell divisions promotes lineage progression. | Q36303523 | ||
Trekking across the brain: the journey of neuronal migration | Q36705736 | ||
Role of microRNAs 99b, 181a, and 181b in the differentiation of human embryonic stem cells to vascular endothelial cells | Q39414649 | ||
Nuclear signaling by the APP intracellular domain occurs predominantly through the amyloidogenic processing pathway | Q39796401 | ||
MicroRNA-125b promotes neuronal differentiation in human cells by repressing multiple targets | Q39820130 | ||
MicroRNA regulation of Alzheimer's Amyloid precursor protein expression. | Q39901302 | ||
P407 | language of work or name | English | Q1860 |
P921 | main subject | neurogenesis | Q1456827 |
P304 | page(s) | 3330 | |
P577 | publication date | 2014-03-03 | |
P1433 | published in | Nature Communications | Q573880 |
P1476 | title | Amyloid precursor protein regulates neurogenesis by antagonizing miR-574-5p in the developing cerebral cortex | |
P478 | volume | 5 |
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Q36347215 | APP intracellular domain acts as a transcriptional regulator of miR-663 suppressing neuronal differentiation. |
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Q95729209 | Circulating Levels of miR-574-5p Are Associated with Neurological Outcome after Cardiac Arrest in Women: A Target Temperature Management (TTM) Trial Substudy |
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Q35552948 | Global Developmental Gene Programing Involves a Nuclear Form of Fibroblast Growth Factor Receptor-1 (FGFR1). |
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