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Inhibition of thyroid peroxidase by dietary flavonoids
1National Center for Toxicological Research, Jefferson, Arkansas 72079, USA.
Abstract:
Flavonoids are widely distributed in plant-derived foods and possess a variety of biological activities including antithyroid effects in experimental animals and humans. A structure-activity study of 13 commonly consumed flavonoids was conducted to evaluate inhibition of thyroid peroxidase (TPO), the enzyme that catalyzes thyroid hormone biosynthesis. Most flavonoids tested were potent inhibitors of TPO, with IC50 values ranging from 0.6 to 41 microM. Inhibition by the more potent compounds, fisetin, kaempferol, naringenin, and quercetin, which contain a resorcinol moiety, was consistent with mechanism-based inactivation of TPO as previously observed for resorcinol and derivatives. Other flavonoids inhibited TPO by different mechanisms, such as myricetin and naringin, showed noncompetitive inhibition of tyrosine iodination with respect to iodine ion and linear mixed-type inhibition with respect to hydrogen peroxide. In contrast, biochanin A was found to be an alternate substrate for iodination. The major product, 6,8-diiodo-biochanin A, was characterized by electrospray mass spectrometry and 1H-NMR. These inhibitory mechanisms for flavonoids are consistent with the antithyroid effects observed in experimental animals and, further, predict differences in hazards for antithyroid effects in humans consuming dietary flavonoids. In vivo, suicide substrate inhibition, which could be reversed only by de novo protein synthesis, would be long-lasting. However, the effects of reversible binding inhibitors and alternate substrates would be temporary due to attenuation by metabolism and excretion. The central role of hormonal regulation in growth and proliferation of thyroid tissue suggests that chronic consumption of flavonoids, especially suicide substrates, could play a role in the etiology of thyroid cancer.
Insights
Dietary flavonoids can inhibit thyroid peroxidase (TPO), impacting thyroid hormone synthesis. Different flavonoids exhibit varied inhibition mechanisms, influencing potential antithyroid effects and thyroid cancer risk in humans.
Area of Science:
- Biochemistry
- Endocrinology
- Nutritional Science
Background:
- Flavonoids are common plant compounds with diverse biological activities.
- Some flavonoids exhibit antithyroid effects in animal and human studies.
- Thyroid peroxidase (TPO) is crucial for thyroid hormone biosynthesis.
Purpose of the Study:
- To investigate the structure-activity relationships of 13 dietary flavonoids.
- To evaluate the inhibitory effects of these flavonoids on TPO activity.
- To elucidate the mechanisms by which flavonoids inhibit TPO.
Main Methods:
- Conducted a structure-activity study on 13 commonly consumed flavonoids.
- Assessed TPO inhibition using IC50 values.
- Characterized inhibition mechanisms (e.g., mechanism-based inactivation, noncompetitive inhibition, alternate substrate) using biochemical assays and mass spectrometry.
- Identified and characterized the iodinated product of biochanin A.
Main Results:
- Most tested flavonoids potently inhibited TPO (IC50: 0.6–41 microM).
- Potent inhibitors (fisetin, kaempferol, naringenin, quercetin) acted via mechanism-based inactivation.
- Myricetin and naringin showed noncompetitive inhibition, while biochanin A acted as an alternate substrate.
- Inhibition mechanisms varied, influencing the duration and reversibility of antithyroid effects.
Conclusions:
- Flavonoid inhibition of TPO explains observed antithyroid effects.
- Different inhibition mechanisms predict varying human health risks.
- Chronic consumption of certain flavonoids, especially suicide substrates, may influence thyroid cancer etiology.