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Updated: May 2, 2026

Using Human Induced Pluripotent Stem Cell-derived Hepatocyte-like Cells for Drug Discovery
Published on: May 19, 2018
Triazine Thiols Decrease Apolipoprotein B Secretion From Hepatocytes Through Inhibition of Human Carboxylesterase 1
Josef Blaszkiewicz1, Yu-Lin Jiang1, Jui-Tung Liu1
1Department of Regenerative Medicine and Cell Biology, Medical University of South Carolina, Charleston, South Carolina.
Insights
Triazine thiols are novel, specific inhibitors of Carboxylesterase 1 (CES1). This discovery reveals their mechanism for reducing apolipoprotein B-100 secretion, offering a new approach for treating hypercholesterolemia.
Area of Science:
- Biochemistry and Pharmacology
- Genetics and Molecular Biology
Background:
- Homozygous familial hypercholesterolemia (HoFH) is a severe genetic disorder causing high LDL cholesterol, often resistant to treatments.
- Existing HoFH therapies have limitations, including hepatic lipid elevation and accessibility issues.
- Triazine thiols were previously found to reduce apolipoprotein B-100 (APOB) secretion and lower cholesterol in preclinical models.
Purpose of the Study:
- To elucidate the mechanism of action for triazine thiols in lowering cholesterol.
- To identify the specific protein target of triazine thiols.
- To validate CES1 inhibition as a therapeutic strategy for hypercholesterolemia.
Main Methods:
- Affinity-based mass spectrometry to identify protein targets.
- Biochemical assays to characterize enzyme inhibition kinetics.
- Molecular modeling to predict binding sites.
- CRISPR-Cas9 gene editing to create CES1-deficient cells.
Main Results:
- Carboxylesterase 1 (CES1) was identified as the specific binding protein for triazine thiols.
- Triazine thiols function as slow-binding, allosteric, covalent inhibitors of CES1.
- Molecular modeling and mutation studies pinpointed Cysteine 390 as crucial for inhibition.
- CES1-deficient cells showed reduced APOB secretion, mirroring the effect of triazine thiols.
Conclusions:
- Triazine thiols are established as specific inhibitors of CES1.
- CES1 inhibition is confirmed as the mechanism underlying APOB reduction by triazine thiols.
- This research presents CES1 inhibition as a promising therapeutic avenue for managing hypercholesterolemia.
Background & Aims:
Homozygous familial hypercholesterolemia is an autosomal genetic disorder that generates increased levels of low-density lipoproteins in the serum. Elevated low-density lipoprotein results in hypercholesterolemia leading to potentially fatal cardiovascular disease. Patients with homozygous familial hypercholesterolemia are often refractory to standard cholesterol-lowering treatments. Some available pharmaceuticals developed specifically for homozygous familial hypercholesterolemia can elevate hepatic lipid levels and in other cases have limited accessibility. Previously, we identified a family of triazine thiol compounds that effectively reduce apolipoprotein B-100 secretion by hepatocytes. In mice with humanized livers, triazine thiols effectively lowered serum cholesterol, triglycerides, low-density lipoproteins and lipoprotein(a). Despite their effectiveness, the mode of action of triazine thiols was unknown.
Methods:
Affinity-based mass spectrometry, biochemical assays, molecular modeling, and gene-edited induced pluripotent stem cell-derived hepatocyte-like cells were used to identify and characterize the molecular target and mechanism of action of triazine thiols.
Results:
Using affinity-based mass spectrometry, we identified Carboxylesterase 1 (CES1) as a triazine thiol binding protein. Biochemical assays demonstrated that triazine thiols are slow-binding, allosteric, covalent CES1-specific inhibitors. Molecular modeling identified a predicted binding site within CES1 near cysteine 390, and loss of this cysteine conferred resistance to triazine thiol-mediated inhibition. Moreover, hepatocyte-like cells derived from CES1-/- induced human pluripotent stem cells exhibited a significant reduction in APOB secretion, mimicking the effect of triazine thiol treatment.
Conclusions:
This study establishes triazine thiols as novel, highly specific carboxylesterase 1 inhibitors, providing insight into their mechanism and highlighting carboxylesterase 1 inhibition as an approach for treating hypercholesterolemia.
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