Phosphorylation at the disordered N-end makes HuR accumulate and dimerize in the cytoplasm

Author:

Baños-Jaime Blanca1ORCID,Corrales-Guerrero Laura1ORCID,Pérez-Mejías Gonzalo1ORCID,Rejano-Gordillo Claudia M234ORCID,Velázquez-Campoy Adrián567ORCID,Martínez-Cruz Luis Alfonso23ORCID,Martínez-Chantar María Luz23ORCID,De la Rosa Miguel A1ORCID,Díaz-Moreno Irene1ORCID

Affiliation:

1. Institute for Chemical Research (IIQ), Scientific Research Center “Isla de la Cartuja” (cicCartuja), University of Seville - CSIC , Seville  41092 , Spain

2. Centre for Biomedical Research Network of Hepatic and Digestive Diseases (CIBERehd) , Madrid  28029 , Spain

3. Liver Disease Lab, BRTA CIC bioGUNE , Derio 48160  Bizkaia , Spain

4. Department of Biochemistry and Molecular Biology, Faculty of Sciences, University of Extremadura; University Institute of Biosanitary Research of Extremadura (INUBE) , Badajoz  06071 , Spain

5. Institute for Biocomputation and Physic of Complex Systems (BIFI), Joint Unit GBsC-CSIC-BIFI, University of Zaragoza , Zaragoza  50018 , Spain

6. Departament of Biochemistry and Molecular and Cellular Biology, University of Zaragoza , Zaragoza  50009 , Spain

7. Institute for Health Research of Aragón (IIS Aragon) , Zaragoza  50009 , Spain

Abstract

Abstract Human antigen R (HuR) is an RNA binding protein mainly involved in maintaining the stability and controlling the translation of mRNAs, critical for immune response, cell survival, proliferation and apoptosis. Although HuR is a nuclear protein, its mRNA translational-related function occurs at the cytoplasm, where the oligomeric form of HuR is more abundant. However, the regulation of nucleo-cytoplasmic transport of HuR and its connection with protein oligomerization remain unclear. In this work, we describe the phosphorylation of Tyr5 as a new hallmark for HuR activation. Our biophysical, structural and computational assays using phosphorylated and phosphomimetic HuR proteins demonstrate that phosphorylation of Tyr5 at the disordered N-end stretch induces global changes on HuR dynamics and conformation, modifying the solvent accessible surface of the HuR nucleo-cytoplasmic shuttling (HNS) sequence and releasing regions implicated in HuR dimerization. These findings explain the preferential cytoplasmic accumulation of phosphorylated HuR in HeLa cells, aiding to comprehend the mechanisms underlying HuR nucleus-cytoplasm shuttling and its later dimerization, both of which are relevant in HuR-related pathogenesis.

Funder

Agencia Estatal de Investigación

Spanish Ministry of Science and Innovation

ERDF A way of making Europe

Andalusian Government

Spanish Ministry of Education, Culture and Sport

Program of Requalification of the Spanish University System

European Union

Universidad de Sevilla

Publisher

Oxford University Press (OUP)

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