RACK1 Specifically Regulates Translation through Its Binding to Ribosomes (original) (raw)

RACK1 mRNA translation is regulated via a rapamycin-sensitive pathway and coordinated with ribosomal protein synthesis

Valentina Iadevaia

FEBS Letters, 2005

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Ribosomal RACK1 promotes proliferation of neuroblastoma cells independently of global translation upregulation

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RACK1 controls IRES-mediated translation of viruses

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Involvement of Arabidopsis RACK1 in Protein Translation and Its Regulation by Abscisic Acid

jianjun guo

Plant Physiology, 2011

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Direct ribosomal binding by a cellular inhibitor of translation

Robert Mats

Nature Structural & Molecular Biology, 2006

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Asc1p/RACK1 Connects Ribosomes to Eukaryotic Phosphosignaling

Gerhard Braus

Molecular and cellular biology, 2017

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RACK1/Asc1p, a Ribosomal Node in Cellular Signaling

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Molecular & Cellular Proteomics, 2013

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Ribosomal protein S1 influences trans-translation in vitro and in vivo

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Emerging Role of Eukaryote Ribosomes in Translational Control

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International Journal of Molecular Sciences, 2019

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Ribosomal Protein S1: An Important Trans-Translational Factor

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Biochemistry & Physiology: Open Access, 2013

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Ribosomal Proteins in the Spotlight

Knud Nierhaus

Critical Reviews in Biochemistry and Molecular Biology, 2005

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Ribosomes in the balance: structural equilibrium ensures translational fidelity and proper gene expression

Jonathan Dinman

Nucleic acids research, 2014

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Yeast Asc1p and mammalian RACK1 are functionally orthologous core 40S ribosomal proteins that repress gene expression

Salisha Hill

Molecular and cellular biology, 2004

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Translating the Game: Ribosomes as Active Players

Piera Calamita

Frontiers in Genetics, 2018

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Association of RACK1 protein with ribosomes in Plasmodium falciparum

Sergej Djuranović

2021

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Translational Control of Ribosomal Protein mRNAs in Eukaryotes

Oded Meyuhas

Cold Spring Harbor Monograph Archive, 1996

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RACK1 Is a Ribosome Scaffold Protein for β-actin mRNA/ZBP1 Complex

Marcello Ceci

PLoS ONE, 2012

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Post-translational Modification of Ribosomal Proteins

Simon Arragain

Journal of Biological Chemistry, 2009

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Translation initiation by cap‐dependent ribosome recruitment: Recent insights and open questions

Thomas Preiss

WIREs RNA, 2018

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Functional Importance of Mobile Ribosomal Proteins

Jin-der Wen

BioMed research international, 2015

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Specialized ribosomes: highly specific translation in vivo of a single targetted mRNA species

Martin Verbeet

Gene, 1995

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Duplicated ribosomal protein paralogs promote alternative translation and drug resistance

Mustafa Malik-Ghulam

Nature Communications

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S1 Ribosomal Protein Functions in Translation Initiation and Ribonuclease RegB Activation Are Mediated by Similar RNA-Protein Interactions: AN NMR AND SAXS ANALYSIS

Sandrine M Caputo

Journal of Biological Chemistry, 2008

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Ribosomal RACK1 Regulates the Dendritic Arborization by Repressing FMRP Activity

Francesca Tilesi

International Journal of Molecular Sciences

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The eIF3c/NIP1 PCI domain interacts with RNA and RACK1/ASC1 and promotes assembly of translation preinitiation complexes

Edit Rutkai, T. Kouba

Nucleic Acids Research, 2012

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Insights into the ribosomal trans‐ translation rescue system: lessons from recent structural studies

Emmanuel Giudice

The FEBS Journal, 2022

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Structured mRNAs Regulate Translation Initiation by Binding to the Platform of the Ribosome

Marat Yusupov, Alexander Myasnikov

Cell, 2007

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Ribosome Stalling Regulates IRES-Mediated Translation in Eukaryotes, a Parallel to Prokaryotic Attenuation

İbrahim Yaman

Molecular Cell, 2005

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Escherichia coli Ribosomal Protein S1 Unfolds Structured mRNAs Onto the Ribosome for Active Translation Initiation

Stefano Marzi, Bruno Klaholz

PLoS Biology, 2013

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