Common and Distinctive Functions of the Hippo Effectors Taz and Yap in Skeletal Muscle Stem Cell Function

Author:

Sun Congshan1,De Mello Vanessa2,Mohamed Abdalla2,Ortuste Quiroga Huascar P.1,Garcia-Munoz Amaya3,Al Bloshi Abdullah2,Tremblay Annie M.456,von Kriegsheim Alexander3,Collie-Duguid Elaina7,Vargesson Neil2,Matallanas David3,Wackerhage Henning28,Zammit Peter S.1ORCID

Affiliation:

1. a Randall Division of Cell and Molecular Biophysics, King’s College London, London, UK

2. b School of Medicine, Medical Sciences & Nutrition, University of Aberdeen, Foresterhill, Aberdeen, Scotland, UK

3. c Systems Biology Ireland, Conway Institute, Dublin, Ireland

4. d Stem Cell Program, Children’s Hospital, Boston, Massachusetts, USA

5. e Department of Stem Cell and Regenerative Biology, Harvard University, Cambridge, Massachusetts, USA

6. f Harvard Stem Cell Institute, Cambridge, Massachusetts, USA

7. g Centre for Genome Enabled Biology and Medicine, School of Medicine, Medical Sciences and Nutrition, University of Aberdeen, Foresterhill, Aberdeen, Scotland, UK

8. h Faculty of Sport and Health Sciences, Technical University of Munich, Munich, Germany

Abstract

Abstract Hippo pathway downstream effectors Yap and Taz play key roles in cell proliferation and regeneration, regulating gene expression especially via Tead transcription factors. To investigate their role in skeletal muscle stem cells, we analyzed Taz in vivo and ex vivo in comparison with Yap. Small interfering RNA knockdown or retroviral-mediated expression of wild-type human or constitutively active TAZ mutants in satellite cells showed that TAZ promoted proliferation, a function shared with YAP. However, at later stages of myogenesis, TAZ also enhanced myogenic differentiation of myoblasts, whereas YAP inhibits such differentiation. Functionally, while muscle growth was mildly affected in Taz (gene Wwtr1–/–) knockout mice, there were no overt effects on regeneration. Conversely, conditional knockout of Yap in satellite cells of Pax7Cre-ERT2/+: Yapfl°x/fl°x:Rosa26Lacz mice produced a regeneration deficit. To identify potential mechanisms, microarray analysis showed many common TAZ/YAP target genes, but TAZ also regulates some genes independently of YAP, including myogenic genes such as Pax7, Myf5, and Myod1 (ArrayExpress–E-MTAB-5395). Proteomic analysis revealed many novel binding partners of TAZ/YAP in myogenic cells, but TAZ also interacts with proteins distinct from YAP that are often involved in myogenesis and aspects of cytoskeleton organization (ProteomeXchange–PXD005751). Neither TAZ nor YAP bind members of the Wnt destruction complex but both regulated expression of Wnt and Wnt-cross talking genes with known roles in myogenesis. Finally, TAZ operates through Tead4 to enhance myogenic differentiation. In summary, Taz and Yap have overlapping functions in promoting myoblast proliferation but Taz then switches to enhance myogenic differentiation.

Funder

Medical Research Council

BIODESIGN

European Union’s Seventh Framework Programme for research, technological development and demonstration

Sarcoma UK

BBSRC EastBio DTP Ph.D. studentship

Association Française Contre les Myopathies

Friends of Anchor

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Developmental Biology,Molecular Medicine

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