Arraystar Epitranscriptomics Array Services >> |
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Title |
Author |
Journal |
Year |
N6-methyladenosine (m6A) methyltransferase WTAP accelerates the Warburg effect of gastric cancer through regulating HK2 stability |
Yu H, et al. |
Biomedicine & Pharmacotherapy |
2020 |
Bioinformatics analysis integrating metabolomics of m6A RNA microarray in intervertebral disc degeneration |
Wang X, et al. |
Epigenomics |
2020 |
Fusarium infection alters the m6A-modified transcript landscape in the cornea |
Jianzhang Hu, et al. |
Experimental Eye Research |
2020 |
Epitranscriptome of the ventral tegmental area in a deep brain-stimulated chronic unpredictable mild stress mouse model |
Song N, et al. |
Translational Neuroscience |
2020 |
Transient Focal Ischemia Significantly Alters the m6A Epitranscriptomic Tagging of RNAs in the Brain |
Chokkalla A K, et al. |
Stroke |
2019 |
m6A methylation of precursor-miR-320/RUNX2 controls osteogenic potential of bone marrow-derived mesenchymal stem cells |
Yan G, et al. |
Molecular Therapy-Nucleic Acids |
2019 |
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MeRIP-Sequencing Services >> |
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Title |
Author |
Journal |
Year |
A defined N6-methyladenosine (m 6 A) profile conferred by METTL3 regulates muscle stem cell/myoblast state transitions |
Gheller B J, et al. |
Cell Death Discovery |
2020 |
MTHFD2 links RNA methylation to metabolic reprogramming in renal cell carcinoma |
Green N H, et al. |
Oncogene |
2019 |
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CLIP-Sequencing Services |
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Title |
Author |
Journal |
Year |
Intronic RNAs mediate EZH2 regulation of epigenetic targets |
Sonia Guil, et al. |
Nature Structural & Molecular Biology |
2012 |
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LC-MS Based RNA Modification Analysis Services - tRNA/mRNA/others >> |
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Title |
Author |
Journal |
Year |
Elongator Subunit 3 (Elp3) Is Required for Zebrafish Trunk Development |
Rojas-Benítez D, et al. |
International Journal of Molecular Sciences |
2020 |
Papillary Renal Cell Carcinomas Rewire Glutathione Metabolism and Are Deficient in Both Anabolic Glucose Synthesis and Oxidative Phosphorylation |
Ahmad A A, et al. |
Cancers |
2019 |
Elongator and codon bias regulate protein levels in mammalian peripheral neurons |
Goffena J, et al. |
Nature Communications |
2018 |