Rhou maintains the epithelial architecture and facilitates differentiation of the foregut endoderm

Author:

Loebel David A. F.12,Studdert Joshua B.1,Power Melinda1,Radziewic Tania1,Jones Vanessa1,Coultas Leigh3,Jackson Yvette14,Rao Renuka S.1,Steiner Kirsten1,Fossat Nicolas12,Robb Lorraine3,Tam Patrick P. L.12

Affiliation:

1. Embryology Unit, Children’s Medical Research Institute, Westmead, NSW 2145, Australia.

2. Sydney Medical School, University of Sydney, NSW 2006, Australia.

3. The Walter and Eliza Hall Institute of Medical Research, Parkville, Victoria 3050, Australia.

4. Department of Biological Sciences, Macquarie University, NSW 2109, Australia.

Abstract

Rhou encodes a Cdc42-related atypical Rho GTPase that influences actin organization in cultured cells. In mouse embryos at early-somite to early-organogenesis stages, Rhou is expressed in the columnar endoderm epithelium lining the lateral and ventral wall of the anterior intestinal portal. During foregut development, Rhou is downregulated in regions where the epithelium acquires a multilayered morphology heralding the budding of organ primordia. In embryos generated from Rhou knockdown embryonic stem (ES) cells, the embryonic foregut displays an abnormally flattened shape. The epithelial architecture of the endoderm is disrupted, the cells are depleted of microvilli and the phalloidin-stained F-actin content of their sub-apical cortical domain is reduced. Rhou-deficient cells in ES cell-derived embryos and embryoid bodies are less efficient in endoderm differentiation. Impaired endoderm differentiation of Rhou-deficient ES cells is accompanied by reduced expression of c-Jun/AP-1 target genes, consistent with a role for Rhou in regulating JNK activity. Downregulation of Rhou in individual endoderm cells results in a reduced ability of these cells to occupy the apical territory of the epithelium. Our findings highlight epithelial morphogenesis as a required intermediate step in the differentiation of endoderm progenitors. In vivo, Rhou activity maintains the epithelial architecture of the endoderm progenitors, and its downregulation accompanies the transition of the columnar epithelium in the embryonic foregut to a multilayered cell sheet during organ formation.

Publisher

The Company of Biologists

Subject

Developmental Biology,Molecular Biology

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