The in vivo genetic program of murine primordial lung epithelial progenitors

Author:

Ikonomou LaertisORCID,Herriges Michael J.,Lewandowski Sara L.ORCID,Marsland RobertORCID,Villacorta-Martin Carlos,Caballero Ignacio S.,Frank David B.,Sanghrajka Reeti M.,Dame Keri,Kańduła Maciej M.,Hicks-Berthet JuliaORCID,Lawton Matthew L.ORCID,Christodoulou Constantina,Fabian Attila J.,Kolaczyk Eric,Varelas XaralabosORCID,Morrisey Edward E.,Shannon John M.,Mehta PankajORCID,Kotton Darrell N.

Abstract

AbstractMultipotent Nkx2-1-positive lung epithelial primordial progenitors of the foregut endoderm are thought to be the developmental precursors to all adult lung epithelial lineages. However, little is known about the global transcriptomic programs or gene networks that regulate these gateway progenitors in vivo. Here we use bulk RNA-sequencing to describe the unique genetic program of in vivo murine lung primordial progenitors and computationally identify signaling pathways, such as Wnt and Tgf-β superfamily pathways, that are involved in their cell-fate determination from pre-specified embryonic foregut. We integrate this information in computational models to generate in vitro engineered lung primordial progenitors from mouse pluripotent stem cells, improving the fidelity of the resulting cells through unbiased, easy-to-interpret similarity scores and modulation of cell culture conditions, including substratum elastic modulus and extracellular matrix composition. The methodology proposed here can have wide applicability to the in vitro derivation of bona fide tissue progenitors of all germ layers.

Funder

U.S. Department of Health & Human Services | National Institutes of Health

Simons Foundation

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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