Human alveolar progenitors generate dual lineage bronchioalveolar organoids

Author:

Hoffmann Karen,Obermayer BenediktORCID,Hönzke Katja,Fatykhova Diana,Demir ZeynepORCID,Löwa Anna,Alves Luiz Gustavo TeixeiraORCID,Wyler EmanuelORCID,Lopez-Rodriguez Elena,Mieth Maren,Baumgardt Morris,Hoppe Judith,Firsching Theresa C.ORCID,Tönnies Mario,Bauer Torsten T.,Eggeling Stephan,Tran Hong-Linh,Schneider Paul,Neudecker Jens,Rückert Jens C.,Gruber Achim D.ORCID,Ochs MatthiasORCID,Landthaler MarkusORCID,Beule DieterORCID,Suttorp Norbert,Hippenstiel Stefan,Hocke Andreas C.,Kessler MirjanaORCID

Abstract

AbstractMechanisms of epithelial renewal in the alveolar compartment remain incompletely understood. To this end, we aimed to characterize alveolar progenitors. Single-cell RNA-sequencing (scRNA-seq) analysis of the HTII-280+/EpCAM+ population from adult human lung revealed subclusters enriched for adult stem cell signature (ASCS) genes. We found that alveolar progenitors in organoid culture in vitro show phenotypic lineage plasticity as they can yield alveolar or bronchial cell-type progeny. The direction of the differentiation is dependent on the presence of the GSK-3β inhibitor, CHIR99021. By RNA-seq profiling of GSK-3β knockdown organoids we identified additional candidate target genes of the inhibitor, among others FOXM1 and EGF. This gives evidence of Wnt pathway independent regulatory mechanisms of alveolar specification. Following influenza A virus (IAV) infection organoids showed a similar response as lung tissue explants which confirms their suitability for studies of sequelae of pathogen-host interaction.

Funder

Einstein 3R Center

Publisher

Springer Science and Business Media LLC

Subject

General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology,Medicine (miscellaneous)

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