Directed differentiation of human iPSCs to functional ovarian granulosa-like cells via transcription factor overexpression

Author:

Pierson Smela Merrick D12ORCID,Kramme Christian C12ORCID,Fortuna Patrick RJ12,Adams Jessica L12,Su Rui12,Dong Edward12,Kobayashi Mutsumi3ORCID,Brixi Garyk1245,Kavirayuni Venkata Srikar45,Tysinger Emma45ORCID,Kohman Richie E12ORCID,Shioda Toshi3ORCID,Chatterjee Pranam1245ORCID,Church George M12ORCID

Affiliation:

1. Wyss Institute, Harvard University

2. Department of Genetics, Harvard Medical School

3. Massachusetts General Hospital Center for Cancer Research, Harvard Medical School

4. Department of Biomedical Engineering, Duke University

5. Department of Computer Science, Duke University

Abstract

An in vitro model of human ovarian follicles would greatly benefit the study of female reproduction. Ovarian development requires the combination of germ cells and several types of somatic cells. Among these, granulosa cells play a key role in follicle formation and support for oogenesis. Whereas efficient protocols exist for generating human primordial germ cell-like cells (hPGCLCs) from human induced pluripotent stem cells (hiPSCs), a method of generating granulosa cells has been elusive. Here, we report that simultaneous overexpression of two transcription factors (TFs) can direct the differentiation of hiPSCs to granulosa-like cells. We elucidate the regulatory effects of several granulosa-related TFs and establish that overexpression of NR5A1 and either RUNX1 or RUNX2 is sufficient to generate granulosa-like cells. Our granulosa-like cells have transcriptomes similar to human fetal ovarian cells and recapitulate key ovarian phenotypes including follicle formation and steroidogenesis. When aggregated with hPGCLCs, our cells form ovary-like organoids (ovaroids) and support hPGCLC development from the premigratory to the gonadal stage as measured by induction of DAZL expression. This model system will provide unique opportunities for studying human ovarian biology and may enable the development of therapies for female reproductive health.

Funder

Wyss Institute

Gameto, Inc

National Science Foundation

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

Reference80 articles.

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3. Near-optimal probabilistic RNA-seq quantification;Bray;Nature Biotechnology,2016

4. Directed differentiation of human ipscs to functional ovarian granulosa-like cells via transcription factor overexpression;Brixi,2023

5. Dazl limits pluripotency, differentiation, and apoptosis in developing primordial germ cells;Chen;Stem Cell Reports,2014

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