Protein Kinase C Modulation Determines the Mesoderm/Extraembryonic Fate Under BMP4 Induction From Human Pluripotent Stem Cells

Author:

Godoy-Parejo Carlos1,Deng Chunhao12,Xu Jiaqi1,Zhang Zhaoying1,Ren Zhili1,Ai Nana1,Liu Weiwei134,Ge Wei1,Deng Chuxia5,Xu Xiaoling5,Chin Y Eugene6,Chen Guokai1234ORCID

Affiliation:

1. Centre of Reproduction, Development and Aging, Faculty of Health Sciences, University of Macau , Macau SAR , People’s Republic of China

2. Zhuhai UM Science & Technology Research Institute , Zhuhai, Guangdong , People’s Republic of China

3. Institute of Translational Medicine, Faculty of Health Sciences, University of Macau , Macau SAR , People’s Republic of China

4. Biological Imaging and Stem Cell Core Facility, Faculty of Health Sciences, University of Macau , Macau SAR , People’s Republic of China

5. Cancer Centre, Faculty of Health Sciences, University of Macau , Macau SAR , People’s Republic of China

6. Jiangsu Key Laboratory of Infection and Immunity, Institutes of Biology and Medical Sciences, Soochow University , Suzhou, Jiangsu , People’s Republic of China

Abstract

Abstract The interplay among mitogenic signaling pathways is crucial for proper embryogenesis. These pathways collaboratively act through intracellular master regulators to determine specific cell fates. Identifying the master regulators is critical to understanding embryogenesis and to developing new applications of pluripotent stem cells. In this report, we demonstrate protein kinase C (PKC) as an intrinsic master switch between embryonic and extraembryonic cell fates in the differentiation of human pluripotent stem cells (hPSCs). PKCs are essential to induce the extraembryonic lineage downstream of BMP4 and other mitogenic modulators. PKC-alpha (PKCα) suppresses BMP4-induced mesoderm differentiation, and PKC-delta (PKCδ) is required for trophoblast cell fate. PKC activation overrides mesoderm induction conditions and leads to extraembryonic fate. In contrast, PKC inhibition leads to β-catenin (CTNNB1) activation, switching cell fate from trophoblast to mesoderm lineages. This study establishes PKC as a signaling boundary directing the segregation of extraembryonic and embryonic lineages. The manipulation of intrinsic PKC activity could greatly enhance cell differentiation under mitogenic regulation in stem cell applications.

Funder

MOST Key R&D grant

University of Macau

Science and Technology Development Fund

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Developmental Biology,Molecular Medicine

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