Single-cell transcriptomic signatures and gene regulatory networks modulated by Wls in mammalian midline facial formation and clefts

Author:

Gu Ran12,Zhang Shuwen12,Saha Subbroto Kumar12ORCID,Ji Yu12,Reynolds Kurt12,McMahon Moira2ORCID,Sun Bo12,Islam Mohammad2,Trainor Paul A.34ORCID,Chen YiPing5,Xu Ying6ORCID,Chai Yang7,Burkart-Waco Diana8,Zhou Chengji J.12ORCID

Affiliation:

1. University of California at Davis, School of Medicine 1 Department of Biochemistry and Molecular Medicine , , Sacramento, CA 95817 , USA

2. Institute for Pediatric Regenerative Medicine, Shriners Hospitals for Children and UC Davis School of Medicine 2 , Sacramento, CA 95817 , USA

3. Stowers Institute for Medical Research 3 , Kansas City, MO 64110 , USA

4. University of Kansas Medical Center 4 Department of Anatomy and Cell Biology , , Kansas City, KS 66160 , USA

5. Tulane University 5 Department of Cell and Molecular Biology , , New Orleans, LA 70118 , USA

6. Can-SU Genomic Resource Center, Medical College of Soochow University 6 , Suzhou 215006 , China

7. Center for Craniofacial Molecular Biology, Ostrow School of Dentistry, University of Southern California 7 , Los Angeles, CA 90033 , USA

8. Genome Center, University of California 8 DNA Technologies and Expression Analysis Core , , Davis, California 95616 , USA

Abstract

ABSTRACT Formation of highly unique and complex facial structures is controlled by genetic programs that are responsible for the precise coordination of three-dimensional tissue morphogenesis. However, the underlying mechanisms governing these processes remain poorly understood. We combined mouse genetic and genomic approaches to define the mechanisms underlying normal and defective midfacial morphogenesis. Conditional inactivation of the Wnt secretion protein Wls in Pax3-expressing lineage cells disrupted frontonasal primordial patterning, cell survival and directional outgrowth, resulting in altered facial structures, including midfacial hypoplasia and midline facial clefts. Single-cell RNA sequencing revealed unique transcriptomic atlases of mesenchymal subpopulations in the midfacial primordia, which are disrupted in the conditional Wls mutants. Differentially expressed genes and cis-regulatory sequence analyses uncovered that Wls modulates and integrates a core gene regulatory network, consisting of key midfacial regulatory transcription factors (including Msx1, Pax3 and Pax7) and their downstream targets (including Wnt, Shh, Tgfβ and retinoic acid signaling components), in a mesenchymal subpopulation of the medial nasal prominences that is responsible for midline facial formation and fusion. These results reveal fundamental mechanisms underlying mammalian midfacial morphogenesis and related defects at single-cell resolution.

Funder

National Institutes of Health

Shriners Hospitals for Children

Stowers Institute for Medical Research

Ministry of Science and Technology

National Natural Science Foundation of China

Publisher

The Company of Biologists

Subject

Developmental Biology,Molecular Biology

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