High-content screening of feeder-free human embryonic stem cells to identify pro-survival small molecules

Author:

Andrews Paul D.1,Becroft Melissa1,Aspegren Anders2,Gilmour Jane3,James Martyn J.1,McRae Scott2,Kime Robert1,Allcock Robert W.4,Abraham Achamma4,Jiang Zhong4,Strehl Raimund2,Mountford Joanne C.3,Milligan Graeme3,Houslay Miles D.3,Adams David R.4,Frearson Julie A.1

Affiliation:

1. Drug Discovery Unit, Division of Biological Chemistry and Drug Discovery, College of Life Sciences, University of Dundee, Dow Street, Dundee DD1 5EH, Scotland, U.K.

2. Cellartis AB, Maclagan House, 1 Wurzburg Place, Dundee Medipark, Dundee DD2 1FB, Scotland, U.K.

3. Faculty of Biological and Life Sciences, University of Glasgow, Glasgow G12 8QQ, Scotland, U.K.

4. Department of Chemistry, Heriot-Watt University, Edinburgh EH14 4AS, Scotland, U.K.

Abstract

The propensity of human embryonic stem cells to die upon enzymatic disaggregation or low-density plating is an obstacle to their isolation and routine use in drug discovery and basic research. Equally, the very low rate of establishment of implanted cells hinders cell therapy. In the present study we have developed a high-content assay for human embryonic stem cell survival and used this to screen a range of libraries of ‘lead-like’ small molecules and known bioactives. From this we identified 18 confirmed hits with four structural classes being represented by multiple compounds: a series of 5-(acyl/alkyl-amino)indazoles, compounds with a 4-(acylamino)pyridine core, simple N6,N6-dialkyladenines and compounds with a 5-(acylamino)indolinone core. In vitro kinase profiling indicated that the ROCK (Rho-associated kinase)/PRK2 (protein kinase C-related kinase 2) protein kinases are of pivotal importance for cell survival and identified previously unreported compound classes that inhibited this important biological activity. An evaluation using an extensive panel of protein kinases showed that six of our hit compounds exhibited better selectivity for ROCK inhibition than the routinely used commercially available ROCK inhibitor Y-27632. In this screen we also identified the K+-ATP channel opener pinacidil and show that it probably promotes cell survival, by ‘off-target’ inhibition of ROCK/PRK2. We have therefore identified novel pro-survival compounds of greater specificity, equivalent potency and reduced toxicity relative to the routinely employed ROCK inhibitor Y-27632.

Publisher

Portland Press Ltd.

Subject

Cell Biology,Molecular Biology,Biochemistry

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