标题
m6A: Signaling for mRNA splicing
作者
关键词
-
出版物
RNA Biology
Volume 13, Issue 9, Pages 756-759
出版商
Informa UK Limited
发表日期
2016-06-28
DOI
10.1080/15476286.2016.1201628
参考文献
相关参考文献
注意:仅列出部分参考文献,下载原文获取全部文献信息。- Nuclear m 6 A Reader YTHDC1 Regulates mRNA Splicing
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- HNRNPA2B1 Is a Mediator of m6A-Dependent Nuclear RNA Processing Events
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- N6-methyladenosine Modulates Messenger RNA Translation Efficiency
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- A majority of m6A residues are in the last exons, allowing the potential for 3′ UTR regulation
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- Dynamic m6A mRNA methylation directs translational control of heat shock response
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- Crystal structure of the YTH domain of YTHDF2 reveals mechanism for recognition of N6-methyladenosine
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- FTO-dependent demethylation of N6-methyladenosine regulates mRNA splicing and is required for adipogenesis
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- Mammalian WTAP is a regulatory subunit of the RNA N6-methyladenosine methyltransferase
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- N6-methyladenosine modification destabilizes developmental regulators in embryonic stem cells
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- Structural basis for selective binding of m6A RNA by the YTHDC1 YTH domain
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- Perturbation of m6A Writers Reveals Two Distinct Classes of mRNA Methylation at Internal and 5′ Sites
- (2014) Schraga Schwartz et al. Cell Reports
- N6-methyladenosine-dependent regulation of messenger RNA stability
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- A METTL3–METTL14 complex mediates mammalian nuclear RNA N6-adenosine methylation
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- Comprehensive Analysis of mRNA Methylation Reveals Enrichment in 3′ UTRs and near Stop Codons
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- ALKBH5 Is a Mammalian RNA Demethylase that Impacts RNA Metabolism and Mouse Fertility
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- Topology of the human and mouse m6A RNA methylomes revealed by m6A-seq
- (2012) Dan Dominissini et al. NATURE
- N6-Methyladenosine in nuclear RNA is a major substrate of the obesity-associated FTO
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- RNA nucleotide methylation
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- The YTH Domain Is a Novel RNA Binding Domain
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- Expansion of the eukaryotic proteome by alternative splicing
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- Mechanisms of alternative splicing regulation: insights from molecular and genomics approaches
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- Deep surveying of alternative splicing complexity in the human transcriptome by high-throughput sequencing
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