Conformationally constrained analogues of diacylglycerol. 29. Cells sort diacylglycerol-lactone chemical zip codes to produce diverse and selective biological activities

构象受限的二酰甘油类似物。29. 细胞对二酰甘油-内酯化学邮政编码进行分类,以产生多样化和选择性的生物活性

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作者:Dehui Duan, Dina M Sigano, James A Kelley, Christopher C Lai, Nancy E Lewin, Noemi Kedei, Megan L Peach, Jeewoo Lee, Thushara P Abeyweera, Susan A Rotenberg, Hee Kim, Young Ho Kim, Saïd El Kazzouli, Jae-Uk Chung, Howard A Young, Matthew R Young, Alyson Baker, Nancy H Colburn, Adriana Haimovitz-Fried

Abstract

Diacylglycerol-lactone (DAG-lactone) libraries generated by a solid-phase approach using IRORI technology produced a variety of unique biological activities. Subtle differences in chemical diversity in two areas of the molecule, the combination of which generates what we have termed "chemical zip codes", are able to transform a relatively small chemical space into a larger universe of biological activities, as membrane-containing organelles within the cell appear to be able to decode these "chemical zip codes". It is postulated that after binding to protein kinase C (PKC) isozymes or other nonkinase target proteins that contain diacylglycerol responsive, membrane interacting domains (C1 domains), the resulting complexes are directed to diverse intracellular sites where different sets of substrates are accessed. Multiple cellular bioassays show that DAG-lactones, which bind in vitro to PKCalpha to varying degrees, expand their biological repertoire into a larger domain, eliciting distinct cellular responses.

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