Phytochemicals Perturb Membranes and Promiscuously Alter Protein Function
Тип публикации: Journal Article
Дата публикации: 2014-06-17
scimago Q1
wos Q2
БС1
SJR: 1.383
CiteScore: 7.1
Impact factor: 3.8
ISSN: 15548929, 15548937
PubMed ID:
24901212
Biochemistry
General Medicine
Molecular Medicine
Краткое описание
A wide variety of phytochemicals are consumed for their perceived health benefits. Many of these phytochemicals have been found to alter numerous cell functions, but the mechanisms underlying their biological activity tend to be poorly understood. Phenolic phytochemicals are particularly promiscuous modifiers of membrane protein function, suggesting that some of their actions may be due to a common, membrane bilayer-mediated mechanism. To test whether bilayer perturbation may underlie this diversity of actions, we examined five bioactive phenols reported to have medicinal value: capsaicin from chili peppers, curcumin from turmeric, EGCG from green tea, genistein from soybeans, and resveratrol from grapes. We find that each of these widely consumed phytochemicals alters lipid bilayer properties and the function of diverse membrane proteins. Molecular dynamics simulations show that these phytochemicals modify bilayer properties by localizing to the bilayer/solution interface. Bilayer-modifying propensity was verified using a gramicidin-based assay, and indiscriminate modulation of membrane protein function was demonstrated using four proteins: membrane-anchored metalloproteases, mechanosensitive ion channels, and voltage-dependent potassium and sodium channels. Each protein exhibited similar responses to multiple phytochemicals, consistent with a common, bilayer-mediated mechanism. Our results suggest that many effects of amphiphilic phytochemicals are due to cell membrane perturbations, rather than specific protein binding.
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Ingólfsson H. I. et al. Phytochemicals Perturb Membranes and Promiscuously Alter Protein Function // ACS Chemical Biology. 2014. Vol. 9. No. 8. pp. 1788-1798.
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Ingólfsson H. I., Thakur P., Herold K. F., Hobart E. A., Ramsey N. B., Periole X., De Jong D. H., Zwama M., Yilmaz D., Hall K., Maretzky T., Hemmings H., Blobel C. P., Marrink S. J., Koçer A., Sack J. T., Andersen O. Phytochemicals Perturb Membranes and Promiscuously Alter Protein Function // ACS Chemical Biology. 2014. Vol. 9. No. 8. pp. 1788-1798.
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TY - JOUR
DO - 10.1021/cb500086e
UR - https://doi.org/10.1021/cb500086e
TI - Phytochemicals Perturb Membranes and Promiscuously Alter Protein Function
T2 - ACS Chemical Biology
AU - Ingólfsson, Helgi I.
AU - Thakur, Pratima
AU - Herold, Karl F.
AU - Hobart, E. Ashley
AU - Ramsey, Nicole B.
AU - Periole, Xavier
AU - De Jong, Djurre H
AU - Zwama, Martijn
AU - Yilmaz, Duygu
AU - Hall, Katherine
AU - Maretzky, Thorsten
AU - Hemmings, Hugh C.
AU - Blobel, Carl P.
AU - Marrink, Siewert J.
AU - Koçer, Armağan
AU - Sack, Jon T.
AU - Andersen, O.
PY - 2014
DA - 2014/06/17
PB - American Chemical Society (ACS)
SP - 1788-1798
IS - 8
VL - 9
PMID - 24901212
SN - 1554-8929
SN - 1554-8937
ER -
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@article{2014_Ingólfsson,
author = {Helgi I. Ingólfsson and Pratima Thakur and Karl F. Herold and E. Ashley Hobart and Nicole B. Ramsey and Xavier Periole and Djurre H De Jong and Martijn Zwama and Duygu Yilmaz and Katherine Hall and Thorsten Maretzky and Hugh C. Hemmings and Carl P. Blobel and Siewert J. Marrink and Armağan Koçer and Jon T. Sack and O. Andersen},
title = {Phytochemicals Perturb Membranes and Promiscuously Alter Protein Function},
journal = {ACS Chemical Biology},
year = {2014},
volume = {9},
publisher = {American Chemical Society (ACS)},
month = {jun},
url = {https://doi.org/10.1021/cb500086e},
number = {8},
pages = {1788--1798},
doi = {10.1021/cb500086e}
}
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MLA
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Ingólfsson, Helgi I., et al. “Phytochemicals Perturb Membranes and Promiscuously Alter Protein Function.” ACS Chemical Biology, vol. 9, no. 8, Jun. 2014, pp. 1788-1798. https://doi.org/10.1021/cb500086e.