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General decapping activators target different subsets of inefficiently translated mRNAs
by
He, Feng
, Wu, Chan
, Jacobson, Allan
, Celik, Alper
in
Binding sites
/ Chromosomes and Gene Expression
/ Dcp1-Dcp2
/ decapping activators
/ decapping enzyme
/ Enzymes
/ Gene expression
/ Genomes
/ mRNA decay
/ mRNA translation
/ Mutation
/ Proteins
2018
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General decapping activators target different subsets of inefficiently translated mRNAs
by
He, Feng
, Wu, Chan
, Jacobson, Allan
, Celik, Alper
in
Binding sites
/ Chromosomes and Gene Expression
/ Dcp1-Dcp2
/ decapping activators
/ decapping enzyme
/ Enzymes
/ Gene expression
/ Genomes
/ mRNA decay
/ mRNA translation
/ Mutation
/ Proteins
2018
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
General decapping activators target different subsets of inefficiently translated mRNAs
by
He, Feng
, Wu, Chan
, Jacobson, Allan
, Celik, Alper
in
Binding sites
/ Chromosomes and Gene Expression
/ Dcp1-Dcp2
/ decapping activators
/ decapping enzyme
/ Enzymes
/ Gene expression
/ Genomes
/ mRNA decay
/ mRNA translation
/ Mutation
/ Proteins
2018
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General decapping activators target different subsets of inefficiently translated mRNAs
Journal Article
General decapping activators target different subsets of inefficiently translated mRNAs
2018
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Overview
The Dcp1-Dcp2 decapping enzyme and the decapping activators Pat1, Dhh1, and Lsm1 regulate mRNA decapping, but their mechanistic integration is unknown. We analyzed the gene expression consequences of deleting PAT1, LSM1, or DHH1, or the DCP2 C-terminal domain, and found that: i) the Dcp2 C-terminal domain is an effector of both negative and positive regulation; ii) rather than being global activators of decapping, Pat1, Lsm1, and Dhh1 directly target specific subsets of yeast mRNAs and loss of the functions of each of these factors has substantial indirect consequences for genome-wide mRNA expression; and iii) transcripts targeted by Pat1, Lsm1, and Dhh1 exhibit only partial overlap, are generally translated inefficiently, and, as expected, are targeted to decapping-dependent decay. Our results define the roles of Pat1, Lsm1, and Dhh1 in decapping of general mRNAs and suggest that these factors may monitor mRNA translation and target unique features of individual mRNAs.
Publisher
eLife Sciences Publications Ltd,eLife Sciences Publications, Ltd
Subject
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