TBXT dose sensitivity and the decoupling of nascent mesoderm specification from EMT progression in 2D human gastruloids

Author:

Bulger Emily A.12ORCID,Muncie-Vasic Ivana13ORCID,Libby Ashley R. G.12ORCID,McDevitt Todd C.14ORCID,Bruneau Benoit G.15678ORCID

Affiliation:

1. Gladstone Institute of Cardiovascular Disease, Gladstone Institutes 1 , San Francisco, CA 94158 , USA

2. University of California 2 Developmental and Stem Cell Biology Graduate Program , , San Francisco, CA 94158 , USA

3. UC Berkeley-UC San Francisco Graduate Program in Bioengineering 3 , University of California, San Francisco, San Francisco, CA 94158, USA and University of California, Berkeley, Berkeley, CA 94720 , USA

4. University of California 4 Department of Bioengineering and Therapeutic Sciences , , San Francisco, CA 94158 , USA

5. Roddenberry Center for Stem Cell Biology and Medicine at Gladstone 5 , San Francisco, CA 94158 , USA

6. University of California 6 Department of Pediatrics , , San Francisco, CA 94158 , USA

7. Institute for Human Genetics, University of California 7 , San Francisco, CA 94158 , USA

8. Eli and Edythe Broad Center for Regeneration Medicine and Stem Cell Research, University of California 8 , San Francisco, CA 94158 , USA

Abstract

ABSTRACT In the nascent mesoderm, TBXT expression must be precisely regulated to ensure that cells exit the primitive streak and pattern the anterior-posterior axis, but how varying dosage informs morphogenesis is not well understood. In this study, we define the transcriptional consequences of TBXT dosage reduction during early human gastrulation using human induced pluripotent stem cell models of gastrulation and mesoderm differentiation. Multi-omic single-nucleus RNA and single-nucleus ATAC sequencing of 2D gastruloids comprising wild-type, TBXT heterozygous or TBXT null human induced pluripotent stem cells reveal that varying TBXT dosage does not compromise the ability of a cell to differentiate into nascent mesoderm, but instead directly influences the temporal progression of the epithelial-to-mesenchymal transition with wild type transitioning first, followed by TBXT heterozygous and then TBXT null. By differentiating cells into nascent mesoderm in a monolayer format, we further illustrate that TBXT dosage directly impacts the persistence of junctional proteins and cell–cell adhesions. These results demonstrate that epithelial-to-mesenchymal transition progression can be decoupled from the acquisition of mesodermal identity in the early gastrula and shed light on the mechanisms underlying human embryogenesis.

Funder

National Heart, Lung, and Blood Institute

Roddenberry Foundation

Additional Ventures

National Science Foundation

Younger Family Fund

Publisher

The Company of Biologists

Reference70 articles.

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