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RNA-seq and small RNA-seq from WT and ADAR1 knockdown H9 lines and their differentiation to specific types of neurons
PubMed Full text in PMC Similar studies Analyze with GEO2RSRA Run Selector
ADAR1 is required for differentiation and neural induction by regulating microRNA processing in a catalytically independent manner (iCLIP)
PubMed Full text in PMC Similar studies SRA Run Selector
Combinatory RNA sequencing analyses reveal RNA editing-dependent and -independent gene regulation by ADAR1 in gastric cancer
PubMed Similar studies Analyze with GEO2RSRA Run Selector
Alu sequences in undifferentiated human embryonic stem cells display high levels of A-to-I RNA editing
PubMed Full text in PMC Similar studies Analyze with GEO2R
Systematic Mapping of ADAR1 Binding Reveals its Regulatory Roles in Multiple RNA Processing Pathways
PubMed Full text in PMC Similar studies
Systematic Mapping of ADAR1 Binding Reveals its Regulatory Roles in Multiple RNA Processing Pathways [small RNA-seq]
Systematic Mapping of ADAR1 Binding Reveals its Regulatory Roles in Multiple RNA Processing Pathways [CLIP-seq]
ADAR1 controls the miR-381-3p-mediated expression of MRP4 by regulating the production of circHIPK3 in human renal cell
ADAR1-mediated A-to-I RNA editing is essential for erythropoiesis
ADAR1-mediated A-to-I RNA editing is essential for erythropoiesis [RNA-seq]
RNA editing by ADAR1 is essential for erythropoiesis [array]
ADAR1 forms a complex with Dicer to promote microRNA processing and RNA-induced gene silencing
Small RNA analysis of ADAR1-knock down HeLa cells by RNAi
Small RNA analysis of wildtype Mouse embryo and Adar1 null mouse embryo at E11.0 and E11.5 together with mRNA-seq results of E11.5
ADAR2 reproducibly changes abundance and sequence of mature microRNAs in the mouse brain
ADAR2 reproducibly changes abundance and sequence of mature microRNAs in the mouse brain [gene expression]
ADAR2 reproducibly changes abundance and sequence of mature microRNAs in the mouse brain [RNA-Seq]
The RNA editing enzyme ADAR1 is a key regulatory of innate immune responses to RNA
Adenosine-to-inosine RNA editing controls cathepsin S expression in atherosclerosis by enabling HuR-mediated post-transcriptional regulation
ADAR1 downregulation contributes to p16INK4a upregulation independent of RNA editing during senescence
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