A small molecule screen reveals that HSP90β promotes the conversion of iPSC-derived endoderm to a hepatic fate and regulates HNF4A turnover

Author:

Jing Ran1,Duncan Cameron B.1ORCID,Duncan Stephen A.12

Affiliation:

1. Department of Regenerative Medicine and Cell Biology, Medical University of South Carolina, Basic Science Building BS657A, 173 Ashley Ave, MSC 508, Charleston, SC, 29425, USA

2. Hollings Cancer Center, Medical University of South Carolina, 86 Jonathan Lucas Street, MSC 955, Charleston, SC 29425, USA

Abstract

We have previously shown that the transcription factor HNF4A is required for the formation of hepatic progenitor cells from endoderm that has been derived from human induced pluripotent stem cells. We reasoned that we could uncover regulatory pathways with novel roles in hepatocyte differentiation by identifying cellular processes that regulate HNF4A. We, therefore, performed a screen of 1120 small molecules with well-characterized mechanisms of action to detect those that affect the abundance of HNF4A in iPSC–derived hepatic progenitor cells. This approach uncovered several small molecules that depleted HNF4A. Of those, we chose to focus on an inhibitor of Heat Shock Protein 90-beta (HSP90β). We show that mutation of the gene encoding HSP90β represses hepatocyte differentiation during the formation of hepatocytes from iPSCs. We reveal that HSP90β, although dispensable for expression of HNF4A mRNA, directly interacts with HNF4A protein to regulate its half-life. Our results demonstrate that HSP90β has an unappreciated role in controlling hepatic progenitor cell formation and highlight the efficiency of using small-molecule screens during the differentiation of iPSCs to reveal novel molecular mechanisms that control hepatocyte formation.

Funder

National Institutes of Health

Publisher

The Company of Biologists

Subject

Developmental Biology,Molecular Biology

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