Structure-activity relationship analysis of YM155 for inducing selective cell death of human pluripotent stem cells

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Title
Structure-activity relationship analysis of YM155 for inducing selective cell death of human pluripotent stem cells
Author(s)
Y H Go; C Lim; H C Jeong; Ok Seon Kwon; S Chung; H Lee; W Kim; Y G Suh; W S Son; Mi Ok Lee; H J Cha; S H Kim
Bibliographic Citation
Frontiers in Chemistry, vol. 7, pp. 298-298
Publication Year
2019
Abstract
Despite great potential for regenerativemedicine, the high tumorigenic potential of human pluripotent stem cells (hPSCs) to form undesirable teratoma is an important technical hurdle preventing safe cell therapy. Various small molecules that induce the complete elimination of undifferentiated hPSCs, referred to as “stemotoxics,” have been developed to facilitate tumor-free cell therapy, including the Survivin inhibitor YM155. In the present work, based on the chemical structure of YM155, total 26 analogs were synthesized and tested for stemotoxic activity toward human embryonic stem cells (hESCs) and induced PSCs (iPSCs). We found that a hydrogen bond acceptor in the pyrazine ring of YM155 derivatives is critical for stemotoxic activity, which is completely lost in hESCs lacking SLC35F2, which encodes a solute carrier protein. These results suggest that hydrogen bonding interactions between the nitrogens of the pyrazine ring and the SLC35F2 protein are critical for entry of YM155 into hPSCs, and hence stemotoxic activity.
Keyword
stemotoxicsnaphthoquinone imidazoliumSAR (structure-activity relationship)human pluripotent stem cellsteratomaYM155
ISSN
2296-2646
Publisher
Frontiers Media Sa
DOI
http://dx.doi.org/10.3389/fchem.2019.00298
Type
Article
Appears in Collections:
Division of Research on National Challenges > Stem Cell Convergenece Research Center > 1. Journal Articles
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