Abstract

Members of the yeast p24 family, including Emp24p and Erv25p, exist as heteromeric complexes that have been proposed to cycle between the endoplasmic reticulum (ER) and Golgi compartments. The specific functions and sites of action of p24 proteins are still unknown. Here we identified a human homolog of the yeast p24 family of proteins, named ERS25 (endoplasmic reticulum stress-response protein 25), and investigated its role in stress response. ERS25 is predicted to have an ER localization signal peptide, a GOLD (Golgi dynamics) domain, which is found in several eukaryotic Golgi and lipid-trafficking proteins, a coiled-coil region, and a transmembrane domain. We demonstrate that ERS25 is localized to the ER and is induced by ER-specific stress, heat shock, and oxidative stress. The selective induction of ERS25 by brefeldin A, but not tunicamycin, implicates the involvement of ERS25 in protein trafficking between the ER and the Golgi. Small interfering RNA-mediated inhibition of ERS25 results in a significant decrease in apoptosis as well as a reduction of reactive oxygen species induced by oxidative stress. Moreover, ERS25 depletion results in a significant increase in the levels of the ER chaperone HSP70 in response to heat-shock stress through increased levels of HSF-1. We also found that inhibition of ERS25 induction in response to heat shock enhanced the binding of HSP70 to Apaf-1, which is likely to interfere in stress-mediated apoptosis. Together, the data presented here demonstrate that ERS25 may play a critical role in regulation of heat-shock response and apoptosis.

Highlights

  • Which is found in several eukaryotic Golgi and lipid-trafficking proteins and predicted to mediate diverse protein-protein interactions [1]

  • Ablation of ERS25 results in decreased sensitivity to oxidative stress and an increase in HSP70 expression upon heat shock as well as enhanced binding between induced HSP70 and Apaf-1. These results demonstrate that ERS25 is a novel protein of the p24 family of proteins involved in endoplasmic reticulum (ER) stress response and is an important component of heat-shock regulation, representing a novel link between p24 family proteins and ER-stress mediated cell death pathway

  • To characterize the function of this novel p24 family protein, ERS25, we first studied its subcellular localization by cellular fractionation and immunocytochemistry

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Summary

Introduction

Which is found in several eukaryotic Golgi and lipid-trafficking proteins and predicted to mediate diverse protein-protein interactions [1]. Ablation of ERS25 results in decreased sensitivity to oxidative stress and an increase in HSP70 expression upon heat shock as well as enhanced binding between induced HSP70 and Apaf-1.

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