Atlas of multilineage stem cell differentiation reveals TMEM88 as a developmental regulator of blood pressure

2025 · Sophie Shen, Tessa Werner, Samuel Lukowski, Stacey Andersen, Yuliangzi Sun, Woo Shim, Dalia Mizikovsky, Sakurako Kobayashi, Jennifer Outhwaite, Han Chiu, Xiaoli Chen, Gavin Chapman, Ella Martin, Di Xia, Duy Pham, Zezhuo Su, Daniel Kim, Pengyi Yang, Men Tan, Enakshi Sinniah, Qiongyi Zhao, Sumedha Negi, Meredith Redd, Joseph Powell, Sally Dunwoodie, Patrick Tam, Mikael Bodén, Joshua Ho, Quan Nguyen, Nathan Palpant · Nature Communications

Abstract

Abstract Pluripotent stem cells provide a scalable approach to analyse molecular regulation of cell differentiation across developmental lineages. Here, we engineer barcoded induced pluripotent stem cells to generate an atlas of multilineage differentiation from pluripotency, encompassing an eight-day time course with modulation of WNT, BMP, and VEGF signalling pathways. Annotation of in vitro cell types with reference to in vivo development reveals diverse mesendoderm lineage cell types including lateral plate and paraxial mesoderm, neural crest, and primitive gut. Interrogation of temporal and signalling-specific gene expression in this atlas, evaluated against cell type-specific gene expression in human complex trait data highlights the WNT-inhibitor gene TMEM88 as a regulator of mesendodermal lineages influencing cardiovascular and anthropometric traits. Genetic TMEM88 loss of function models show impaired differentiation of endodermal and mesodermal derivatives in vitro and dysregulated arterial blood pressure in vivo. Together, this study provides an atlas of multilineage stem cell differentiation and analysis pipelines to dissect genetic determinants of mammalian developmental physiology.

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Publication Details

Journal
Nature Communications
Volume
16
Issue
1
Publisher
Springer Science and Business Media LLC
ISSN
2041-1723