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

机译:YM155诱导人多能干细胞选择性细胞死亡的构效关系分析

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Despite great potential for regenerative medicine, 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 ‘stem-toxics’, 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 stem-toxic 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 stem-toxic activity, which is completely lost in hESCs lacking SLC35F2 encoding 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 stem-toxic activity.
机译:尽管再生医学具有巨大潜力,但人类多能干细胞(hPSC)形成不期望的畸胎瘤的高致瘤潜力是阻止安全细胞治疗的重要技术障碍。为了促进无肿瘤细胞治疗,已开发出多种诱导完全消除未分化hPSC的小分子,包括Survivin抑制剂YM155。在目前的工作中,基于YM155的化学结构,合成了总共26种类似物,并测试了其对人胚胎干细胞(hESCs)和诱导的PSC(iPSCs)的干毒性活性。我们发现,YM155衍生物的吡嗪环中的氢键受体对茎毒性活动至关重要,而后者在缺少编码溶质载体蛋白的SLC35F2的hESC中完全丧失了。这些结果表明,吡嗪环的氮原子与SLC35F2蛋白之间的氢键相互作用对于YM155进入hPSC至关重要,并因此具有茎毒性活性。

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