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Global hyper-methylation of the N6-methyladenosine RNA modification associated with apple heterografting
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2021-12-29
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The m6A reader CPSF30-L regulates alternative polyadenylation affecting nitrate signaling in Arabidopsis. The m6A reader CPSF30-L regulates alternative polyadenylation affecting nitrate signaling in Arabidopsis
As the most ubiquitous internal modification of eukaryotic mRNA, m6A (N6-methyladenosine) modification plays a vital role in almost every aspect of mRNA metabolism. However, the evidence of m6A in reg
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Additional file 3 of SRSF9 promotes colorectal cancer progression via stabilizing DSN1 mRNA in an m6A-related manner
Additional file 3: Table S3. Target mRNAs of the SRSF9 protein in POSTAR2.
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Requirement of the m6A reader protein YTHDF2 for HTLV-1 replication and persistence
N6-methyladenosine (m6A) as one of the important RNA modifications, has been implicated in viral infection. In this study, we identify a number of m6A modification sites within HTLV-1 RNAs, particular
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High throughput sequencing for YTHDC1 binding RNAs [RNA-seq]
N6-methyladenoisne (m6A) plays critical roles in many biological processes. However, the function of m6A at the early phase of mammalian development remains poorly understood. Here we show that m6A re
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Remodeling of the m6A landscape in the heart reveals conserved post-transcriptional events underlying cardiomyocyte hypertrophy
Regulation of gene expression plays a fundamental role in cardiac stress-responses. Modification of coding transcripts by adenosine methylation (m6A) has recently emerged as a critical post-transcript
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