Splicing enhances translation in mammalian cells: an additional function of the exon junction complex
Сплайсинг усиливает трансляцию в клетках млекопитающих: дополнительная функция экзон-экзонного комплекса
2004-01-15
SCID: 54.1/64hqkc85
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cytoplasmic polysomesexon junction complexmRNA translationmammalian cellsnonsense-mediated decay
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Abstract (AI)
In mammalian cells, spliced mRNAs yield greater quantities of protein per mRNA molecule than do otherwise identical mRNAs not made by splicing. This increased translational yield correlates with enhanced cytoplasmic polysome association of spliced mRNAs, and is attributable to deposition of exon junction complexes (EJCs). Translational stimulation can be replicated by tethering the EJC proteins Y14, Magoh, and RNPS1 or the nonsense-mediated decay (NMD) factors Upf1, Upf2, and Upf3b to an intronless reporter mRNA. Thus, in addition to its previously characterized role in NMD, the EJC also promotes mRNA polysome association. Furthermore, the ability to stimulate translation when bound inside an open reading frame appears to be a general feature of factors required for NMD.
Key Findings
1
Beyond its established role in nonsense-mediated decay, the EJC promotes mRNA polysome association; translation stimulation inside an open reading frame is broadly shared by NMD factors.
2
Spliced mammalian mRNAs produce more protein per mRNA molecule than otherwise identical intronless mRNAs.
3
Tethering EJC proteins Y14, Magoh, and RNPS1, or NMD factors Upf1, Upf2, and Upf3b, to intronless reporter mRNAs reproduces the translation stimulation.
4
The increased translational yield of spliced mRNAs correlates with enhanced association with cytoplasmic polysomes.
5
This translational enhancement is caused by deposition of exon junction complexes on spliced mRNAs.
Research Object
Spliced and otherwise identical unspliced mammalian mRNAs, including intronless reporter mRNAs with tethered exon junction complex or nonsense-mediated decay factors
Research Subject
The effects of exon junction complex and nonsense-mediated decay factors on mRNA cytoplasmic polysome association and translational yield
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2004-01-15
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