Related Experiment Video
Updated: Nov 3, 2025

In Vivo Imaging of Reactive Oxygen Species in a Murine Wound Model
Published on: November 17, 2018
ERO1-PDI Redox Signaling in Health and Disease
Vishwanath Jha1, Tripti Kumari1, Vijayprakash Manickam1
1Division of Hematology, Department of Medicine, Washington University School of Medicine, St. Louis, Missouri, USA.
Abstract:
Protein disulfide isomerase (PDI) and endoplasmic reticulum oxidoreductase 1 (ERO1) are crucial for oxidative protein folding in the endoplasmic reticulum (ER). These enzymes are frequently overexpressed and secreted, and they contribute to the pathology of neurodegenerative, cardiovascular, and metabolic diseases. Tissue-specific knockout mouse models and pharmacologic inhibitors have been developed to advance our understanding of the cell-specific functions of PDI and ERO1. In addition to their roles in protecting cells from the unfolded protein response and oxidative stress, recent studies have revealed that PDI and ERO1 also function outside of the cells. Despite the well-known contributions of PDI and ERO1 to specific disease pathology, the detailed molecular and cellular mechanisms underlying these activities remain to be elucidated. Further, although PDI and ERO1 inhibitors have been identified, the results from previous studies require careful evaluation, as many of these agents are not selective and may have significant cytotoxicity. The functions of PDI and ERO1 in the ER have been extensively studied. Additional studies will be required to define their functions outside the ER.
More Related Videos
10:05Stimulation of Stem Cell Niches and Tissue Regeneration in Mouse Skin by Switchable Protoporphyrin IX-Dependent Photogeneration of Reactive Oxygen Species In Situ
Published on: May 8, 2020
07:17Production and Detection of Reactive Oxygen Species ROS in Cancers
Published on: November 21, 2011
Related Concept Videos
Peroxisomes
Redox Reactions
Redox Reactions
Regulation of the Unfolded Protein Response
Electron Transport Chain: Complex I and II
ROS generation is regulated and maintained at moderate levels necessary...
Nitric Oxide Signaling Pathway