The mevalonate pathway is a critical regulator of tendon cell specification

Jessica W. Chen, Xubo Niu, Matthew J. King, Marie-Therese Noedl, Clifford J. Tabin, Jenna L. Galloway

Development · 2020 · 10 citations · 105 references

DOIFull text

Open access

Abstract

Tendons and ligaments are crucial components of the musculoskeletal system, yet the pathways specifying these fates remain poorly defined. Through a screen of known bioactive chemicals in zebrafish, we identified a new pathway regulating tendon cell induction. We established that statin, through inhibition of the mevalonate pathway, causes an expansion of the tendon progenitor population. Co-expression and live imaging studies indicate that the expansion does not involve an increase in cell proliferation, but rather results from re-specification of cells from the neural crest-derived <i>sox9a<sup>+</sup>/sox10<sup>+</sup></i> skeletal lineage. The effect on tendon cell expansion is specific to the geranylgeranylation branch of the mevalonate pathway and is mediated by inhibition of Rac activity. This work establishes a novel role for the mevalonate pathway and Rac activity in regulating specification of the tendon lineage.

References

105