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Human Lanosterol 14-Alpha Demethylase (CYP51A1) Is a Putative Target for Natural Flavonoid Luteolin 7,3′-Disulfate

Widespread pathologies such as atherosclerosis, metabolic syndrome and cancer are associated with dysregulation of sterol biosynthesis and metabolism. Cholesterol modulates the signaling pathways of neoplastic transformation and tumor progression. Lanosterol 14-alpha demethylase (cytochrome P450(51)...

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Autores principales: Kaluzhskiy, Leonid, Ershov, Pavel, Yablokov, Evgeniy, Shkel, Tatsiana, Grabovec, Irina, Mezentsev, Yuri, Gnedenko, Oksana, Usanov, Sergey, Shabunya, Polina, Fatykhava, Sviatlana, Popov, Alexander, Artyukov, Aleksandr, Styshova, Olga, Gilep, Andrei, Strushkevich, Natallia, Ivanov, Alexis
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8070018/
https://www.ncbi.nlm.nih.gov/pubmed/33924405
http://dx.doi.org/10.3390/molecules26082237
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author Kaluzhskiy, Leonid
Ershov, Pavel
Yablokov, Evgeniy
Shkel, Tatsiana
Grabovec, Irina
Mezentsev, Yuri
Gnedenko, Oksana
Usanov, Sergey
Shabunya, Polina
Fatykhava, Sviatlana
Popov, Alexander
Artyukov, Aleksandr
Styshova, Olga
Gilep, Andrei
Strushkevich, Natallia
Ivanov, Alexis
author_facet Kaluzhskiy, Leonid
Ershov, Pavel
Yablokov, Evgeniy
Shkel, Tatsiana
Grabovec, Irina
Mezentsev, Yuri
Gnedenko, Oksana
Usanov, Sergey
Shabunya, Polina
Fatykhava, Sviatlana
Popov, Alexander
Artyukov, Aleksandr
Styshova, Olga
Gilep, Andrei
Strushkevich, Natallia
Ivanov, Alexis
author_sort Kaluzhskiy, Leonid
collection PubMed
description Widespread pathologies such as atherosclerosis, metabolic syndrome and cancer are associated with dysregulation of sterol biosynthesis and metabolism. Cholesterol modulates the signaling pathways of neoplastic transformation and tumor progression. Lanosterol 14-alpha demethylase (cytochrome P450(51), CYP51A1) catalyzes one of the key steps in cholesterol biosynthesis. The fairly low somatic mutation frequency of CYP51A1, its druggability, as well as the possibility of interfering with cholesterol metabolism in cancer cells collectively suggest the clinical importance of CYP51A1. Here, we show that the natural flavonoid, luteolin 7,3′-disulfate, inhibits CYP51A1 activity. We also screened baicalein and luteolin, known to have antitumor activities and low toxicity, for their ability to interact with CYP51A1. The K(d) values were estimated using both a surface plasmon resonance optical biosensor and spectral titration assays. Unexpectedly, in the enzymatic activity assays, only the water-soluble form of luteolin—luteolin 7,3′-disulfate—showed the ability to potently inhibit CYP51A1. Based on molecular docking, luteolin 7,3′-disulfate binding suggests blocking of the substrate access channel. However, an alternative site on the proximal surface where the redox partner binds cannot be excluded. Overall, flavonoids have the potential to inhibit the activity of human CYP51A1 and should be further explored for their cholesterol-lowering and anti-cancer activity.
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spelling pubmed-80700182021-04-26 Human Lanosterol 14-Alpha Demethylase (CYP51A1) Is a Putative Target for Natural Flavonoid Luteolin 7,3′-Disulfate Kaluzhskiy, Leonid Ershov, Pavel Yablokov, Evgeniy Shkel, Tatsiana Grabovec, Irina Mezentsev, Yuri Gnedenko, Oksana Usanov, Sergey Shabunya, Polina Fatykhava, Sviatlana Popov, Alexander Artyukov, Aleksandr Styshova, Olga Gilep, Andrei Strushkevich, Natallia Ivanov, Alexis Molecules Article Widespread pathologies such as atherosclerosis, metabolic syndrome and cancer are associated with dysregulation of sterol biosynthesis and metabolism. Cholesterol modulates the signaling pathways of neoplastic transformation and tumor progression. Lanosterol 14-alpha demethylase (cytochrome P450(51), CYP51A1) catalyzes one of the key steps in cholesterol biosynthesis. The fairly low somatic mutation frequency of CYP51A1, its druggability, as well as the possibility of interfering with cholesterol metabolism in cancer cells collectively suggest the clinical importance of CYP51A1. Here, we show that the natural flavonoid, luteolin 7,3′-disulfate, inhibits CYP51A1 activity. We also screened baicalein and luteolin, known to have antitumor activities and low toxicity, for their ability to interact with CYP51A1. The K(d) values were estimated using both a surface plasmon resonance optical biosensor and spectral titration assays. Unexpectedly, in the enzymatic activity assays, only the water-soluble form of luteolin—luteolin 7,3′-disulfate—showed the ability to potently inhibit CYP51A1. Based on molecular docking, luteolin 7,3′-disulfate binding suggests blocking of the substrate access channel. However, an alternative site on the proximal surface where the redox partner binds cannot be excluded. Overall, flavonoids have the potential to inhibit the activity of human CYP51A1 and should be further explored for their cholesterol-lowering and anti-cancer activity. MDPI 2021-04-13 /pmc/articles/PMC8070018/ /pubmed/33924405 http://dx.doi.org/10.3390/molecules26082237 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Kaluzhskiy, Leonid
Ershov, Pavel
Yablokov, Evgeniy
Shkel, Tatsiana
Grabovec, Irina
Mezentsev, Yuri
Gnedenko, Oksana
Usanov, Sergey
Shabunya, Polina
Fatykhava, Sviatlana
Popov, Alexander
Artyukov, Aleksandr
Styshova, Olga
Gilep, Andrei
Strushkevich, Natallia
Ivanov, Alexis
Human Lanosterol 14-Alpha Demethylase (CYP51A1) Is a Putative Target for Natural Flavonoid Luteolin 7,3′-Disulfate
title Human Lanosterol 14-Alpha Demethylase (CYP51A1) Is a Putative Target for Natural Flavonoid Luteolin 7,3′-Disulfate
title_full Human Lanosterol 14-Alpha Demethylase (CYP51A1) Is a Putative Target for Natural Flavonoid Luteolin 7,3′-Disulfate
title_fullStr Human Lanosterol 14-Alpha Demethylase (CYP51A1) Is a Putative Target for Natural Flavonoid Luteolin 7,3′-Disulfate
title_full_unstemmed Human Lanosterol 14-Alpha Demethylase (CYP51A1) Is a Putative Target for Natural Flavonoid Luteolin 7,3′-Disulfate
title_short Human Lanosterol 14-Alpha Demethylase (CYP51A1) Is a Putative Target for Natural Flavonoid Luteolin 7,3′-Disulfate
title_sort human lanosterol 14-alpha demethylase (cyp51a1) is a putative target for natural flavonoid luteolin 7,3′-disulfate
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8070018/
https://www.ncbi.nlm.nih.gov/pubmed/33924405
http://dx.doi.org/10.3390/molecules26082237
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