The potential for manipulating RNA with pentatricopeptide repeat proteins
about
Engineering RNA-binding proteins with diverse activitiesSystems and synthetic biology approaches to alter plant cell walls and reduce biomass recalcitranceThe design and structural characterization of a synthetic pentatricopeptide repeat proteinThe Propensity of Pentatricopeptide Repeat Genes to Evolve into Restorers of Cytoplasmic Male SterilitySeedUSoon: A New Software Program to Improve Seed Stock Management and Plant Line Exchanges between Research LaboratoriesHost specificity in Sporisorium reilianum is determined by distinct mechanisms in maize and sorghum.Programmable RNA recognition and cleavage by CRISPR/Cas9.Examination of the dimerization states of the single-stranded RNA recognition protein pentatricopeptide repeat 10 (PPR10).Structural basis for specific single-stranded RNA recognition by designer pentatricopeptide repeat proteinsGrowing Slowly 1 locus encodes a PLS-type PPR protein required for RNA editing and plant development in Arabidopsis.Synthetic biology devices and circuits for RNA-based 'smart vaccines': a propositional review.Development of Genome Engineering Tools from Plant-Specific PPR Proteins Using Animal Cultured Cells.Spontaneous dominant mutations in chlamydomonas highlight ongoing evolution by gene diversification.Predictable alteration of sequence recognition by RNA editing factors from Arabidopsis.Evolutionary plasticity of restorer-of-fertility-like proteins in rice.The solution structure of the pentatricopeptide repeat protein PPR10 upon binding atpH RNA.What can we do with 1000 plastid genomes?Quantitative analysis of motifs contributing to the interaction between PLS-subfamily members and their target RNA sequences in plastid RNA editing.The Pentatricopeptide Repeat Protein SOT5/EMB2279 is Required for Plastid rpl2 and trnK Intron Splicing.Plant organelle RNA editing and its specificity factors: enhancements of analyses and new database features in PREPACT 3.0.Targeted cleavage of mRNA induced by a modified pentatricopeptide repeat protein in plant mitochondriaAEF1/MPR25 is implicated in RNA editing of plastidatpFand mitochondrialnad5, and also promotesatpFsplicing in Arabidopsis and riceEmerging tools for synthetic biology in plants
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The potential for manipulating RNA with pentatricopeptide repeat proteins
description
im Januar 2014 veröffentlichter wissenschaftlicher Artikel
@de
scientific article published on 29 January 2014
@en
wetenschappelijk artikel
@nl
наукова стаття, опублікована в січні 2014
@uk
name
The potential for manipulating RNA with pentatricopeptide repeat proteins
@en
The potential for manipulating RNA with pentatricopeptide repeat proteins
@nl
type
label
The potential for manipulating RNA with pentatricopeptide repeat proteins
@en
The potential for manipulating RNA with pentatricopeptide repeat proteins
@nl
prefLabel
The potential for manipulating RNA with pentatricopeptide repeat proteins
@en
The potential for manipulating RNA with pentatricopeptide repeat proteins
@nl
P2860
P356
P1433
P1476
The potential for manipulating RNA with pentatricopeptide repeat proteins
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P2093
Takahiro Nakamura
Yusuke Yagi
P2860
P304
P356
10.1111/TPJ.12377
P50
P577
2014-01-29T00:00:00Z