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Updated: Apr 15, 2026

Resin-Assisted Capture Coupled with Isobaric Tandem Mass Tag Labeling for Multiplexed Quantification of Protein Thiol Oxidation
Published on: June 21, 2021
Small molecule-induced oxidation of protein disulfide isomerase is neuroprotective
Anna Kaplan1, Michael M Gaschler2, Denise E Dunn3
1Department of Biological Sciences, Columbia University, New York, NY 10027;
Abstract:
Protein disulfide isomerase (PDI) is a chaperone protein in the endoplasmic reticulum that is up-regulated in mouse models of, and brains of patients with, neurodegenerative diseases involving protein misfolding. PDI's role in these diseases, however, is not fully understood. Here, we report the discovery of a reversible, neuroprotective lead optimized compound (LOC)14, that acts as a modulator of PDI. LOC14 was identified using a high-throughput screen of ∼10,000 lead-optimized compounds for potent rescue of viability of PC12 cells expressing mutant huntingtin protein, followed by an evaluation of compounds on PDI reductase activity in an in vitro screen. Isothermal titration calorimetry and fluorescence experiments revealed that binding to PDI was reversible with a Kd of 62 nM, suggesting LOC14 to be the most potent PDI inhibitor reported to date. Using 2D heteronuclear single quantum correlation NMR experiments, we were able to map the binding site of LOC14 as being adjacent to the active site and to observe that binding of LOC14 forces PDI to adopt an oxidized conformation. Furthermore, we found that LOC14-induced oxidation of PDI has a neuroprotective effect not only in cell culture, but also in corticostriatal brain slice cultures. LOC14 exhibited high stability in mouse liver microsomes and blood plasma, low intrinsic microsome clearance, and low plasma-protein binding. These results suggest that LOC14 is a promising lead compound to evaluate the potential therapeutic effects of modulating PDI in animal models of disease.
Insights
Researchers discovered a new compound, LOC14, that modulates protein disulfide isomerase (PDI). This compound shows neuroprotective effects and is a promising lead for treating protein misfolding diseases.
Area of Science:
- Neuroscience
- Biochemistry
- Pharmacology
Background:
- Protein disulfide isomerase (PDI) is implicated in neurodegenerative diseases.
- PDI's precise role in these conditions remains unclear.
- Protein misfolding is a hallmark of neurodegenerative disorders.
Purpose of the Study:
- To identify and characterize novel modulators of PDI.
- To investigate the therapeutic potential of PDI modulation in neurodegenerative diseases.
Main Methods:
- High-throughput screening of lead-optimized compounds.
- In vitro assays measuring PDI reductase activity.
- Isothermal titration calorimetry and fluorescence spectroscopy.
- 2D NMR for binding site analysis.
- Cell culture and brain slice culture models.
Main Results:
- A novel compound, LOC14, was identified as a potent and reversible PDI modulator (Kd = 62 nM).
- LOC14 binds adjacent to the PDI active site, inducing an oxidized conformation.
- LOC14 demonstrates neuroprotective effects in cell and brain slice cultures.
- LOC14 exhibits favorable pharmacokinetic properties (stability, low clearance, low plasma binding).
Conclusions:
- LOC14 is a potent PDI inhibitor with demonstrated neuroprotective capabilities.
- Modulating PDI via compounds like LOC14 offers a potential therapeutic strategy for neurodegenerative diseases.
- LOC14 serves as a promising lead compound for further preclinical development.
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