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Cited 262 time in webofscience Cited 275 time in scopus
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Partitioning of cancer therapeutics in nuclear condensates SCIE SCOPUS

Title
Partitioning of cancer therapeutics in nuclear condensates
Authors
Klein, Isaac A.Boija, AnnAfeyan, Lena K.Hawken, Susana WilsonFan, MengyangDall'Agnese, AlessandraOksuz, OzgurHenninger, Jonathan E.Shrinivas, KrishnaSabari, Benjamin R.Sagi, IdoClark, Victoria E.Platt, Jesse M.Kar, MrityunjoyMcCall, Patrick M.Zamudio, Alicia V.Manteiga, John C.Coffey, Eliot L.Li, Charles H.Hannett, Nancy M.Guo, Yang EricDecker, Tim-MichaelLee, Tong IhnZhang, TinghuWeng, Jing-KeTaatjes, Dylan J.Chakraborty, ArupSharp, Phillip A.Chang, Young TaeHyman, Anthony A.Gray, Nathanael S.Young, Richard A.
Date Issued
2020-06
Publisher
AMER ASSOC ADVANCEMENT SCIENCE
Abstract
The nucleus contains diverse phase-separated condensates that compartmentalize and concentrate biomolecules with distinct physicochemical properties. Here, we investigated whether condensates concentrate small-molecule cancer therapeutics such that their pharmacodynamic properties are altered. We found that antineoplastic drugs become concentrated in specific protein condensates in vitro and that this occurs through physicochemical properties independent of the drug target. This behavior was also observed in tumor cells, where drug partitioning influenced drug activity. Altering the properties of the condensate was found to affect the concentration and activity of drugs. These results suggest that selective partitioning and concentration of small molecules within condensates contributes to drug pharmacodynamics and that further understanding of this phenomenon may facilitate advances in disease therapy.
URI
https://oasis.postech.ac.kr/handle/2014.oak/103946
DOI
10.1126/science.aaz4427
ISSN
0036-8075
Article Type
Article
Citation
SCIENCE, vol. 368, no. 6497, page. 1386 - +, 2020-06
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