Developmental Cell
Volume 20, Issue 5, 17 May 2011, Pages 583-596
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Article
The WTX Tumor Suppressor Regulates Mesenchymal Progenitor Cell Fate Specification

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Summary

WTX is an X-linked tumor suppressor targeted by somatic mutations in Wilms tumor, a pediatric kidney cancer, and by germline inactivation in osteopathia striata with cranial sclerosis, a bone overgrowth syndrome. Here, we show that Wtx deletion in mice causes neonatal lethality, somatic overgrowth, and malformation of multiple mesenchyme-derived tissues, including bone, fat, kidney, heart, and spleen. Inactivation of Wtx at different developmental stages and in primary mesenchymal progenitor cells (MPCs) reveals that bone mass increase and adipose tissue deficiency are due to altered lineage fate decisions coupled with delayed terminal differentiation. Specification defects in MPCs result from aberrant β-catenin activation, whereas alternative pathways contribute to the subsequently delayed differentiation of lineage-restricted cells. Thus, Wtx is a regulator of MPC commitment and differentiation with stage-specific functions in inhibiting canonical Wnt signaling. Furthermore, the constellation of anomalies in Wtx null mice suggests that this tumor suppressor broadly regulates MPCs in multiple tissues.

Highlights

► Wtx regulates development of tissues derived from MPCs ► Wtx suppresses osteoblast fate and promotes adipogenesis in MPCs ► In contrast, terminal differentiation of osteoblasts is promoted by Wtx ► Inhibition of β-catenin by Wtx controls MPC fate but not terminal differentiation

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These authors contributed equally to this work