Login / Signup

Interaction of Flavonoids with Zinc and Zinc-Containing Enzymes.

Marcel HrubšaVáclav TvrdýMichal KutýKateřina ValentováVladimir KrenPřemysl Mladěnka
Published in: Journal of agricultural and food chemistry (2022)
The current chelation therapy has several drawbacks, including lack of selectivity, which could lead to trace metal depletion. Consequently, the proper function of metalloenzymes can be disrupted. Flavonoids possess chelating properties and hence interfere with the homeostasis of essential metals. We focused on zinc, an important trace metal required for the function of many enzymes and transcription factors. After making an initial evaluation of the Zn 2+ -chelating properties of a series of flavonoids, the effect of these compounds on various zinc-containing enzymes was also investigated. We performed enzyme inhibition assays spectrophotometrically using yeast and equine alcohol dehydrogenases and bovine glutamate dehydrogenase. Nine of the 21 flavonoids tested were capable of chelating Zn 2+ . Baicalein and 3-hydroxyflavone were the most potent Zn 2+ chelators under slightly acidic and neutral pH conditions. This chelation was also confirmed by the ability to reverse Zn 2+ -induced enzymatic inhibition of bovine glutamate dehydrogenase. Although some flavonoids were also able to inhibit zinc-containing alcohol dehydrogenases, this inhibition was likely not caused by Zn 2+ chelation. Luteolin was a relatively potent inhibitor of these enzymes regardless of the presence of Zn 2+ . Docking studies confirmed the binding of active flavonoids to equine alcohol dehydrogenase without any significant interaction with the catalytic zinc.
Keyphrases
  • heavy metals
  • oxide nanoparticles
  • health risk assessment
  • transcription factor
  • stem cells
  • anti inflammatory
  • climate change
  • small molecule
  • replacement therapy
  • crystal structure